
{"id":5619,"date":"2019-04-10T21:24:18","date_gmt":"2019-04-10T17:24:18","guid":{"rendered":"http:\/\/www.ire.kharkov.ua\/?page_id=5619"},"modified":"2024-07-19T16:34:42","modified_gmt":"2024-07-19T12:34:42","slug":"publications-13-1","status":"publish","type":"page","link":"https:\/\/www.ire.kharkov.ua\/en\/scient-dep\/micro-nanooptics\/publications-13-1.html","title":{"rendered":"Publications"},"content":{"rendered":"<h4>Publications of LMNO Classified by Topics<\/h4>\r\n\r\n<a href=\"#one\">Method of analytical regularization and Nystrom-type methods<\/a>\r\n<a href=\"#two\">Micro and nano lasers &#8211; LEPs<\/a>\r\n<a href=\"#three\">Plasmon and periodicity assisted optical sensors &#8211; scattering and absorption<\/a>\r\n<a href=\"#four\">Graphene-based THz antennas and sensors &#8211; scattering and absorption<\/a>\r\n<a href=\"#five\">Dielectric screens, lenses and radomes &#8211; scattering and absorption<\/a>\r\n<a href=\"#six\">Dielectric open resonators &#8211; eigenvalue problems<\/a>\r\n<a href=\"#seven\">Open waveguides &#8211; scattering and absorptions<\/a>\r\n<a href=\"#eight\">Open waveguides &#8211; eigenvalue problems<\/a>\r\n<a href=\"#ten\">Gratings &#8211; scattering and absorption<\/a><a href=\"#nine\">PEC and resistive screens and cavities &#8211; scattering and absorption<\/a>\r\n<a href=\"#eleven\">PEC and resistive reflector antennas &#8211; scattering and absorption<\/a>\r\n<a href=\"#twelve\">PEC and resistive printed and conformal antennas &#8211; scattering and absorption<\/a>\r\n<a href=\"#fourteen\">History of microwaves<\/a><a href=\"#thirteen\">Others<\/a>\r\n<\/br>\r\n      <h4>Method of Analytical Regularization (MAR) and Nystrom-type Methods<\/h4><a name=one><\/a>\r\n<b>1-14.<\/b> A.O. Spiridonov, E.M. Karchevskii, A.I. Nosich, \t&quot;Rigorous formulation of the lasing eigenvalue problem as a spectral problem for a Fredholm operator-function,&quot; <i>Lobachevsky J. of Mathematics<\/i>, vol. 39, no 8, pp. 1148-1157, 2018. <a href=\"\/wp-content\/uploads\/2018\/12\/ljm2018-lep.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-13.<\/b> A.I. Nosich, &quot;Method of analytical regularization in computational photonics,&quot; <i>Radio Science<\/i>, vol. 51, pp. 1421-1430, 2016. <b>Special Issue of the 2015 URSI-Japan Radio Science Meeting<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/radsci2016-marph.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-12.<\/b> I.O. Sukharevsky, O.V. Shapoval, A.I. Nosich, A. Altintas, &quot;Validity and limitations of the median-line integral equation technique in the scattering by material strips of sub-wavelength thickness,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>,  vol. 62, no 7, pp. 3623-3631, 2014.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap2014-gbc.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-11.<\/b> M.V. Balaban, E.I. Smotrova, O.V. Shapoval, V.S. Bulygin, A.I. Nosich, &quot;Nystrom-type techniques for solving electromagnetics integral equations with smooth and singular kernels,&quot; \t<i>Int. J. Numerical Modeling: Electronic Networks, Devices and Fields<\/i>, vol. 25, no 5-6, pp. 490-511, 2012. <b>Special Issue on Nontraditional Differential and Integral Equation Discretization Schemes<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/jnmecdf2012-nystrom.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-10.<\/b> V.S. Bulygin, A.I. Nosich, Y.V. Gandel, &quot;Nystrom-type method in three-dimensional electromagnetic diffraction by a finite PEC rotationally symmetric surface,&quot;\t<i> IEEE Trans. Antennas and Propagation<\/i>, vol. 60, no 10, pp. 4710-4718, 2012.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap2012-reflect.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-9.<\/b> M.V. Balaban, R. Sauleau, T.M. Benson, A.I. Nosich, &quot;Dual integral equations technique in electromagnetic wave scattering by a thin disk,&quot; <i>Progress in Electromagnetic Research B<\/i>, vol. 16, pp. 107-126, 2009. <a href=\"\/wp-content\/uploads\/2018\/12\/pierb2009-disk.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-8.<\/b> S.V. Boriskina, P. Sewell, T.M. Benson, A.I. Nosich, &quot;Accurate simulation of 2D optical microcavities with uniquely solvable boundary integral equations and trigonometric Galerkin discretization,&quot;<i> J. Optical Society of America A<\/i>, vol. 21, no 3, pp. 393-402, 2004.<a href=\"\/wp-content\/uploads\/2018\/12\/josaa2004-muller.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-7.<\/b> A.I. Nosich, &quot;Method of analytical regularization based on the static part inversion in wave scattering by imperfect thin screens,&quot; <i>J. Telecommunications and \tInformation Technology<\/i>, Warsaw: NIT Press, no 3, pp. 72-79, 2001.<a href=\"\/wp-content\/uploads\/2018\/12\/jtit2001-imperf.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-5.<\/b> A. Altintas, A.I. Nosich, &quot;The method of regularization and its application to some electromagnetic problems,&quot; in N.K. Uzunoglu, K.S. Nikita, D.I. Kaklamani (Eds.), <i>Applied Computational Electromagnetics<\/i>, Springer NATO-ASI Series, vol. 171, pp. 409-423, 2000.<a href=\"\/wp-content\/uploads\/2018\/12\/springer2000-mar.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-6.<\/b> A.I. Nosich, &quot;Method of Analytical Regularization in wave-scattering and eigenvalue problems: foundations and review of solutions,&quot; <i>IEEE Antennas and Propagation Magazine<\/i>, vol. 42, no 3, pp. 34-49, 1999. <a href=\"\/wp-content\/uploads\/2018\/12\/apmag1999-mareg.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>1-4.<\/b> S.V. Boriskina, A.I. Nosich, &quot;Method of analytical regularization in the problems of wave scattering by dielectric cylinders of arbitrary cross section,&quot; <i>Radio Physics and Radio Astronomy<\/i>, Kharkov: IRA Press, vol. 3, no 4, pp. 405-412, 1998 (in Russian). <a href=\"\/wp-content\/uploads\/2018\/12\/rpra1998-dielCOM.pdf\"><b><font size=1>[comment]<\/font><\/b><\/a>\r\n<b>1-3.<\/b> A.I. Nosich, &quot;Green&#8217;s function &#8211; dual series approach in wave scattering from combined resonant scatterers,&quot; in M. Hashimoto, M. Idemen and O.A. Tretyakov (Eds.), <i>Analytical and Numerical Methods in Electromagnetic Wave Theory<\/i>, Tokyo: Science House Publ., pp. 419-469, 1993.\r\n<b>1-2.<\/b> A.I. Nosich, &quot;Accurate solution of wave diffraction problems for nonclosed circular screens in stratified dielectric medium,&quot; <i>Doklady Akademii Nauk Ukrainskoi SSR<\/i>, ser. A, no 10, pp. 47-51, 1986 (in Russian).\r\n<b>1-1.<\/b> A.I. Nosich, &quot;Excitation of a 2-D open resonator containing a diffraction grating,&quot; <i>Doklady Akademii Nauk Ukrainskoi SSR<\/i>, ser. A, no 3, pp. 51-55, 1985 (in Russian).\r\n<\/br>\r\n<h4>Micro and Nano Lasers &#8211; Lasing Eigenvalue Problems (LEP)<\/h4><a name=two><\/a> \r\n<b>2-23.<\/b> A.O. Spiridonov, E.M. Karchevskii, T.M. Benson, A.I. Nosich, &quot;Why elliptic microcavity lasers emit light on bow-tie-like modes instead of whispering-gallery-like modes,&quot;<i> Optics Communications<\/i>, vol. 438, 2019. <a href=\"\/wp-content\/uploads\/2018\/12\/opcom2019-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-22.<\/b> D.M. Natarov, T.M. Benson, A.I. Nosich, &quot;Electromagnetic analysis of the lasing thresholds of hybrid plasmon modes of a silver tube nanolaser with active core and active shell,&quot;<i> Beilstein J. of \tNanotechnology<\/i>, vol. 10, pp. 294-304, 2019. <a href=\"\/wp-content\/uploads\/2018\/12\/bjn2019-nanolaser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-21.<\/b> O.V. Shapoval, K. Kobayashi, A.I. Nosich, &quot;Electromagnetic engineering of a single-mode nanolaser on a metal plasmonic strip placed into a circular quantum wire,&quot;<i> IEEE J. Selected Topics in Quantum Electronics<\/i>, vol. 23, no 6, art. no 1501609, 2017. \t<b>Special Issue on Semiconductor Lasers<\/b> <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2017-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-20.<\/b> A.O. Spiridonov, E.M. Karchevskii, A.I. Nosich, &quot;Symmetry accounting in the integral-equation analysis of lasing eigenvalue problems for two-dimensional optical microcavities,&quot;<i> J. Optical Society America B<\/i>, vol. 34, no 7, pp.1435-1443, 2017. <a href=\"\/wp-content\/uploads\/2018\/12\/josab2017-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-19.<\/b> A.S. Zolotukhina, A.O. Spiridonov, E.M. Karchevskii, A.I. Nosich, &quot;Electromagnetic analysis of optimal pumping of a microdisk laser with a ring electrode,&quot;<i> Applied Physics B<\/i>, vol. 123, no 1, art no 32, 2017. <a href=\"\/wp-content\/uploads\/2018\/12\/apb2017-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-18.<\/b> A.S. Zolotukhina, A.O. Spiridonov, E.M. Karchevskii, A.I. Nosich, &quot;Lasing modes of a microdisk with a ring gain area and of an active microring,&quot;<i> Optical and Quantum Electronics<\/i>, vol. 47, no 12, pp. 3883-3891, 2015.<a href=\"\/wp-content\/uploads\/2018\/12\/oqe2015-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-17.<\/b> D.M. Natarov, &quot;Modes of a core-shell silver wire plasmonic nanolaser beyond the Drude formula,&quot; <i>IOP J. of Optics<\/i>, vol. 16, vol. 16, no 7, pp. 075002\/6, 2014. <a href=\"\/wp-content\/uploads\/2018\/12\/natarov-jop2014laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-16.<\/b> E.I. Smotrova, A.I. Nosich, &quot;Optical coupling of an active microdisk to a passive one: effect on the lasing thresholds of the whispering-gallery supermodes,&quot; <i>Optics Letters<\/i>, vol. 38, no 12, pp. 2059-2061, 2013. <a href=\"\/wp-content\/uploads\/2018\/12\/oplet2013-laser.pdf\"><b><font size=1>[pdf] <\/font><\/b><\/a>\r\n<b>2-15.<\/b> E.I. Smotrova, V. Tsvirkun, I. Gozhyk, C. Lafargue, C. Ulysse, M. Lebental, A.I. Nosich, &quot;Spectra, thresholds and modal fields of a kite-shaped microcavity laser,&quot; <i>J. Optical Society America B<\/i>,  \tvol. 30, no 6, pp. 1732-1742, 2013. <a href=\"\/wp-content\/uploads\/2018\/12\/josab2013-laser.pdf\"><b><font size=1>[pdf] <\/font><\/b><\/a>\r\n<b>2-14.<\/b> V.O. Byelobrov, T.M. Benson, A.I. Nosich, &quot;Binary grating of sub-wavelength silver and quantum wires as a photonic-plasmonic  lasing platform with nanoscale elements,&quot; <i>IEEE J. Selected Topics in Quantum \tElectronics<\/i>, vol. 18, no 6, pp. 1839-1846, 2012. <b>Special Issue on Quantum and Nanoscale Photonics<\/b> <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2012-gratlas.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-13.<\/b>  R. I. Shekhter, A.M. Kadigrobov, M. Jonson, E.I. Smotrova, A.I. Nosich, V. Korenivski, &quot;Sub-wavelength terahertz spin-flip laser based on a magnetic point-contact array,&quot;<i> Optics Letters<\/i>, vol. 36, no 12, pp. 2381-2383, 2011.\t<a href=\"\/wp-content\/uploads\/2018\/12\/oplet2011-thzlas.pdf\"><b><font size=1>[pdf] <\/font><\/b><\/a>\r\n<b>2-12.<\/b>  E.I. Smotrova, V.O. Byelobrov, T.M. Benson, J. Ctyroky, R. Sauleau, A.I. Nosich, &quot;Optical theorem helps understand thresholds of lasing in microcavities with active regions,&quot;<i> IEEE J. Quantum Electronics<\/i>, vol. 47, no 1, pp. 20-30, 2011.\t<a href=\"\/wp-content\/uploads\/2018\/12\/jqe2011-laserC.pdf\"><b><font size=1>[pdf] <\/font><\/b><\/a>\r\n<b>2-11.<\/b>  V.O. Byelobrov, J. Ctyroky, T.M. Benson, R. Sauleau, A. Altintas, A.I. Nosich, &quot;Low-threshold lasing eigenmodes of an infinite periodic chain of quantum wires,&quot;<i> Optics Letters<\/i>, vol. 35, no 21, pp. 3634-3636, 2010. <a href=\"\/wp-content\/uploads\/2018\/12\/oplet2010-gratlas.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-10.<\/b>  E.I. Smotrova, T.M. Benson, P. Sewell, J. Ctyroky, R. Sauleau, A.I. Nosich, &quot;Optical fields of the lowest modes in a uniformly active thin sub-wavelength spiral microcavity,&quot;<i> Optics Letters<\/i>, vol. 34, no 24, pp. 3773-3775,\t2009.\t<a href=\"\/wp-content\/uploads\/2018\/12\/oplet2009-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-9.<\/b>  E.I. Smotrova, T.M. Benson, P. Sewell, J. Ctyroky, A.I. Nosich, &quot;Lasing frequencies and thresholds of the dipole-type supermodes in an active microdisk concentrically coupled with a passive microring,&quot;<i> J. Optical Society America A<\/i>,  vol. 25, no 11, pp. 2884-2892, 2008.\t<a href=\"\/wp-content\/uploads\/2018\/12\/josaa2008-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-8.<\/b> T. Benson, A. Nosich, E. Smotrova, M. Balaban, P. Sewell, &quot;Laser eigenvalue problems: The electromagnetic modelling of microlasers,&quot;<i> Proc. SPIE<\/i>, vol. 6452, pp. 64520L\/8, 2007. <b>Special Issue: Laser Resonators and Beam Control<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/spie2007-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-7.<\/b> A.I. Nosich, E.I. Smotrova, S.V. Boriskina, T.M. Benson, P. Sewell, &quot;Trends in microdisk laser research and linear optical modeling,&quot;<i> Optical and Quantum Electronics<\/i>,  vol. 39, no 15, pp. 1253-1272, 2007. <b>Invited paper<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/oqe2007-review.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-6.<\/b> V.O. Byelobrov, A.I. Nosich, &quot;Mathematical analysis of\tthe lasing eigenvalue problem for the optical modes in a layered dielectric microcavity with a quantum \twell and distributed Bragg reflectors,&quot;<i> Optical and Quantum Electronics<\/i>, vol. 39, no 10-11, pp. 927-937, 2007.<a href=\"\/wp-content\/uploads\/2018\/12\/oqe2007-laserDBR.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>2-5.<\/b> E.I. Smotrova, A.I. Nosich, T.M. Benson, P. Sewell, &quot;Ultralow lasing thresholds of the pi-type supermodes in cyclic photonic molecules composed of sub-micron disks with monopole and dipole modes,&quot;<i> IEEE Photonics Technology Letters<\/i>, vol. 18, no 19, pp. 1993-1995, 2006.\t<a href=\"\/wp-content\/uploads\/2018\/12\/ptlet2006-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-4.<\/b> E.I. Smotrova, A.I. Nosich, T.M. Benson, P. Sewell, &quot;Threshold reduction in a cyclic photonic molecule laser composed of identical microdisks with whispering-gallery modes, &quot;<i> Optics Letters<\/i>, vol. 31, no 7, pp. 921-923, 2006. <a href=\"\/wp-content\/uploads\/2018\/12\/oplet2006-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a><b>2-3.<\/b> E.I. Smotrova,\r\n<b>2-3.<\/b> A.I. Nosich, T.M. Benson, P. Sewell, &quot;Optical coupling of  whispering gallery modes of two identical microdisks and its effect on the lasing spectra and thresholds,&quot;<i> IEEE J. Selected Topics in Quantum Electronics<\/i>, vol. 12, no 1, pp. 78-85, 2006. <b>Special Issue on Microresonators<\/b> <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2006-laserC.pdf\"><b><font size=1>[pdf with comment]<\/font><\/b><\/a>\r\n<b>2-2.<\/b> E.I. Smotrova, A.I. Nosich, T.M. Benson, P. Sewell, &quot;Cold-cavity thresholds of microdisks with uniform and non-uniform gain: quasi-3D modeling with accurate 2D analysis,&quot;<i> IEEE J. Selected Topics in Quantum Electronics<\/i>, vol. 11, no 5, pp. 1135-1142, 2005. <b>Special Issue on Semiconductor Lasers<\/b> <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2005-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>2-1.<\/b> E.I. Smotrova, A.I. Nosich, &quot;Mathematical study of the two-dimensional lasing problem for the whispering-gallery modes in a circular dielectric microcavity,&quot;<i> Optical and Quantum Electronics<\/i>, vol. 36, no 1-3, pp. 213-221, 2004. <a href=\"\/wp-content\/uploads\/2018\/12\/oqe2004-laser.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<\/br>\r\n<h4>Plasmon and Periodicity Assisted Optical Nano-Sensors on Metal Strips and Wires &#8211; Scattering and Absorption<\/h4><a name=three><\/a> \r\n<b>3-16.<\/b>  D.O. Yevtushenko, S.V. Dukhopelnikov, A.I. Nosich, &quot;Optical diffraction radiation from a dielectric and a silver nanowire excited by a modulated electron beam,&quot; <i> Optical and Quantum Electronics,<\/i>, vol. 51, no 1, art. no 29, 2019.\t<a href=\"\/wp-content\/uploads\/2018\/12\/oqe2019-difrad.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-15.<\/b>  E.A. Velichko, D.M. Natarov, &quot;Localized versus delocalized surface plasmons: dual nature of resonances on a silver circular wire and a silver tube of large diameter,&quot; <i> IOP J. of Optics,<\/i>, vol. 20, no 7, at no 075002\/9, 2018.\t<a href=\"\/wp-content\/uploads\/2018\/12\/velichko-jopt2018.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-14.<\/b> T.L. Zinenko, V.O. Byelobrov, M. Marciniak, J. Ctyroky, A.I. Nosich, &quot;Grating resonances on periodic arrays of sub-wavelength wires and strips: from discoveries to photonic device applications,&quot; Chapter 4 in O. Shulika, I. Sukhoivanov (Eds.), <i>Contemporary Optoelectronics: Materials, Metamaterials and Device Applications<\/i>, Springer Ser. Optical Sciences, vol. 199, pp. 65-79, 2016. <a href=\"\/wp-content\/uploads\/2018\/12\/springer2016-grats.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-13.<\/b> O.V. Shapoval,  &quot;Scattering of light waves by finite metal nanostrip gratings: Nystrom-type method and resonance effects,&quot; <i>Radioelectronics and Communications Systems<\/i>, vol. 58, no 5, pp. 201-211, 2015.\t<a href=\"\/wp-content\/uploads\/2018\/12\/shapoval-recs2015strips.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-12.<\/b> O.V. Shapoval, &quot;Comparison of bulk refractive-index sensitivities of optical-mode resonances of a finite comb-like grating of silver nanostrips,&quot; <i>IEEE J. of Quantum Electronics<\/i>, vol. 51, no 4, art. no. 7200108\/8, 2015. <a href=\"\/wp-content\/uploads\/2018\/12\/shapoval-jqe2015comb.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-11.<\/b> D.M. Natarov, M. Marciniak, R. Sauleau, A.I. Nosich, &quot;Seeing the order in a mess: optical signature of periodicity in a cloud of plasmonic nanowires,&quot; <i>Optics Express<\/i>, vol. 22, no. 23, pp. 28190\u201328198, 2014.\t<a href=\"\/wp-content\/uploads\/2018\/12\/opex2014-wires.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-10.<\/b> D.M. Natarov, R. Sauleau, M. Marciniak, A.I. Nosich,  &quot;Effect of periodicity in the resonant scattering of light by finite sparse configurations of many silver nanowires,&quot; <i>Plasmonics<\/i>, vol. 9, no 2, pp. 389-407, 2014.\t<a href=\"\/wp-content\/uploads\/2018\/12\/plasmon2014-wires.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-9.<\/b>  E.A. Velichko, A.I. Nosich, &quot;Refractive-index sensitivities of hybrid surface-plasmon resonances for a core-shell circular silver nanotube sensor,&quot;<i> Optics Letters<\/i>, vol. 38, no 23, pp. 4978-4981, 2013.\t<a href=\"\/wp-content\/uploads\/2018\/12\/oplet2013-sensor.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-8.<\/b> O.V. Shapoval, J. Ctyroky, A.I. Nosich, &quot;Resonance effects in the optical antennas shaped as finite comb-like gratings of noble-metal nanostrips,&quot; <i>Proc. SPIE<\/i>, vol. 8781, pp. 87810U\/8, 2013. <b>Special Issue on Integrated Optics: Physics and Simulation<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/spie2013-strips.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-7.<\/b> T.L. Zinenko, M. Marciniak, A.I. Nosich, &quot;Accurate analysis of light scattering and absorption by an infinite flat grating of thin silver nanostrips in free space using the method of analytical regularization,&quot; <i>IEEE J. Selected Topics in Quantum Electronics<\/i>, vol. 19, no 3, art. no. 9000108\/8, 2013.\t<b>Special Issue on Nanoplasmonics<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2013-strips.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-6.<\/b> O.V. Shapoval, R. Sauleau, A.I. Nosich, &quot;Modeling of plasmon resonances of multiple flat noble-metal nanostrips with a median-line integral equation technique,&quot; <i>IEEE Trans. Nanotechnology<\/i>, \tvol. 12, no 3, pp. 442-449, 2013. <a href=\"\/wp-content\/uploads\/2018\/12\/tnano2013-strips.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-5.<\/b> O.V. Shapoval, A.I. Nosich, &quot;Finite gratings of many thin silver nanostrips: optical resonances and role of periodicity,&quot; <i>AIP Advances,<\/i> vol. 3, no 4, pp. 042120\/13, 2013. <a href=\"\/wp-content\/uploads\/2018\/12\/aipad2013-strips.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-4.<\/b> D.M. Natarov, R. Sauleau, A.I. Nosich,  &quot;Resonance scattering and absorption of light by finite two-period gratings of circular silver nanowires,&quot; <i>Int. J. Semiconductor Physics, Quantum Electronics, and Optoelectronics<\/i>, Kiev, ISP NASU Press, vol. 15, no 3, pp. 204-208, 2012. <a href=\"\/wp-content\/uploads\/2018\/12\/spqeo2012-wires.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-3.<\/b> O.V. Shapoval, R. Sauleau, A.I. Nosich,  &quot;Grating and plasmon resonances in the scattering of light by finite silver nanostrip gratings,&quot; <i>Int. J. Semiconductor Physics, Quantum Electronics, and Optoelectronics<\/i>, Kiev, ISP NASU Press,vol. 15, no, 3, pp. 200-203, 2012.<a href=\"\/wp-content\/uploads\/2018\/12\/spqeo2012-strips.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-2.<\/b> D.M. Natarov, R. Sauleau, A.I. Nosich, \t&quot;Periodicity-enhanced plasmon resonances in the scattering of light by sparse finite gratings of circular silver nanowires,&quot; <i>IEEE Photonics Technology Letters<\/i>, \t vol. 24, no 1, pp. 43-45, 2012.<a href=\"\/wp-content\/uploads\/2018\/12\/ptlet2012-wires.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>3-1.<\/b> D.M. Natarov, V.O. Byelobrov, R. Sauleau, T.M. Benson, A.I. Nosich, &quot;Periodicity-induced effects in the scattering and absorption of light by infinite and finite gratings of circular silver nanowires,&quot; <i>Optics Express<\/i>, vol. 19, no 22, pp. 22176-22190, 2011. <b>Focus Issue \u201cCollective phenomena in photonic, plasmonic and hybrid structures\u201d<\/b><a href=\"\/wp-content\/uploads\/2018\/12\/opex2011-wiresC.pdf\"><b><font size=1>[pdf with comment] <\/font><\/b><\/a>\r\n<\/br>\r\n<h4>Graphene-Based Terahertz Antennas and Sensors &#8211; Scattering and Absorption<\/h4><a name=four><\/a> \r\n<b>4-8.<\/b> S.V. Dukhopelnikov, R. Sauleau, A.I. Nosich, &quot;Integral equation analysis of terahertz RCS of circular dielectric rod with partial graphene cover,&quot; <i>IEEE Trans. Antennas and Propagation,<\/i> 2019, submitted (# ). <a href=\"\/wp-content\/uploads\/2018\/12\/jopt2013-graphene.pdf\"><b><font size=1> <\/font><\/b><\/a>\r\n<b>4-7.<\/b> T.L. Zinenko, A. Matsushima, A.I. Nosich, &quot;Surface-plasmon, grating-mode and slab-mode resonances in THz wave scattering by a graphene strip grating embedded into a dielectric slab,&quot; <i>IEEE J. Selected Topics in Quantum Electronics<\/i>, vol. 23, no 4, art. no 4601809, 2017.\t<b>Special Issue on Terahertz Photonics<\/b> <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2017-graph.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>4-6.<\/b> T. Oguzer A. Altintas, A.I. Nosich, &quot;Focusing of THz waves with a microsize cylindrical reflector made of graphene in the free space,&quot; <i>J. European Optical Society &#8211; Rapid Publications<\/i>, vol. 13, no 1, art. no 16, 2017. <a href=\"\/wp-content\/uploads\/2018\/12\/jeos2017-grphref.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>4-5.<\/b> E.A. Velichko, &quot;Evaluation of a dielectric microtube with a graphene cover as a refractive-index sensor in the THz range,&quot; <i>IOP J. of Optics,<\/i> vol. 18, no 3, pp. 035008\/11, 2016. <a href=\"\/wp-content\/uploads\/2018\/12\/velichko-jopt2016graph.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>4-4.<\/b> O.V. Shapoval, A.I. Nosich, &quot;Bulk refractive-index sensitivities of the THz-range plasmon resonances on a micro-size graphene strip,&quot; <i>IOP J. of Physics D: Applied Physics,<\/i> vol. 49, no 5, pp. 055105\/8, 2016. <a href=\"\/wp-content\/uploads\/2018\/12\/jpd2016-strip.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>4-3.<\/b> T.L. Zinenko, &quot;Scattering and absorption of terahertz waves by a free-standing infinite grating of graphene strips: analytical regularization analysis,&quot; <i>IOP J. of Optics,<\/i> vol. 17, no 5, pp. 055604\/8, 2015. <a href=\"\/wp-content\/uploads\/2018\/12\/zinenko-jopt2015graph.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>4-2.<\/b> M.V. Balaban, O.V. Shapoval, A.I. Nosich, &quot;THz wave scattering by a graphene strip and a disk in the free space: integral equation analysis and surface plasmon resonances,&quot; <i>IOP J. of Optics,<\/i> vol. 15, no 11, pp. 114007\/9, 2013. <b>Special Issue on Graphene Nanophotonics <\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/jopt2013-graphene.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>4-1.<\/b> O.V. Shapoval, J. S. Gomez-Diaz, J. Perruisseau-Carrier, J. Mosig, A.I. Nosich, &quot;Integral equation analysis of plane wave scattering by coplanar graphene-strip gratings in the THz range,&quot; <i>IEEE Trans. Terahertz Science and Technology,<\/i> vol. 3, no 5, pp. 666-673, 2013. <a href=\"\/wp-content\/uploads\/2018\/12\/ttst2013-strips.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>Dielectric Screens, Lenses, Prisms and Radomes &#8211; Scattering and Absorption<\/h4><a name=five><\/a> \r\n<b>5-11.<\/b> I.O. Sukharevsky, A.I. Nosich, A. Altintas, &quot;Manipulation of backscattering from a dielectric cylinder of triangular cross-section using the interplay of GO-like ray effects and resonances,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 63, no 5, pp. 2162-2169, 2015. <a href=\"\/wp-content\/uploads\/2018\/12\/tap2015-prism.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>5-10.<\/b> O.V. Shapoval, R. Sauleau, A.I. Nosich, &quot;Scattering and absorption of waves by flat material strips analyzed using generalized boundary conditions and Nystrom-type algorithm,&quot;<i> IEEE Trans. Antennas and Propagation<\/i>, vol. 59 no 9, pp. 3339-3346, 2011.<a href=\"\/wp-content\/uploads\/2018\/12\/tap2011-strip.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>5-9.<\/b> M.V. Balaban, R. Sauleau, T.M. Benson, A.I. Nosich, &quot;Accurate quantification of the Purcell effect in the presence of a dielectric microdisk of nanoscale thickness,&quot;<i> IET Micro and Nano Letters<\/i>, vol. 6, no 6, pp. 393-396, 2011.\t<a href=\"\/wp-content\/uploads\/2018\/12\/mnlet2011-disk.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>5-8.<\/b> A.V. Boriskin, R. Sauleau, A.I. Nosich, &quot;Performance of hemielliptic dielectric lens antennas with optimal edge illumination,&quot;<i> IEEE Trans. Antennas and Propagation<\/i>, vol. 57, no 7, pp. 2193-2198, 2009.<a href=\"\/wp-content\/uploads\/2018\/12\/tap2009-lens.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>5-7.<\/b> A.V. Boriskin, R. Sauleau, A.I. Nosich, &quot;Exact off-resonance near fields of small-size extended hemielliptic lenses illuminated by plane waves,&quot;<i> J. Optical Society of America A<\/i>, vol. 26, no 2, pp. 259-264, 2009.\t<a href=\"\/wp-content\/uploads\/2018\/12\/josaa2009-lens.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>5-6.<\/b> A.V. Boriskin, S.V. Boriskina, A. Rolland, R. Sauleau, A.I. Nosich, &quot;Test of the FDTD accuracy in the analysis of the scattering resonances associated with high-Q whispering-gallery modes of a circular cylinder,&quot;<i> J. Optical Society of America A<\/i>, vol. 25, no 5, pp. 1169-1173, 2008. <a href=\"\/wp-content\/uploads\/2018\/12\/josaa2008-resonC.pdf\"><b><font size=1>[pdf with comment]<\/font><\/b><\/a>\r\n<b>5-5.<\/b> A.V. Boriskin, A. Rolland, R. Sauleau, A.I. Nosich, &quot;Assessment of FDTD accuracy in the compact hemielliptic dielectric lens antenna analysis,&quot;<i> IEEE Trans. Antennas and Propagation<\/i>,       vol. 56, no 3, pp. 758-764, 2008.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap2008-lens2.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>5-4.<\/b> A.V. Boriskin, G. Godi, R. Sauleau, A.I. Nosich, &quot;Small hemielliptic dielectric lens antenna analysis: boundary integral equations versus geometrical and physical optics&quot;,<i> IEEE Trans. Antennas and Propagation<\/i>, vol. 56, no 2, pp. 485-492, 2008.<a href=\"\/wp-content\/uploads\/2018\/12\/tap2008-lens1.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>      \r\n<b>5-3.<\/b> A.V. Boriskin, G. Godi, A. Rolland, R. Sauleau, A.I. Nosich, &quot;Comparative research of the adequacy of GO\/PO, FDTD, and IE-based numerical algorithms for analyzing compact dielectric lenses in mm and sub-mm integrated antennas,&quot;<i> Radio Physics and Electronics<\/i>, Kharkiv, IRE NASU Press, vol. 12, no 2, pp. 306-318, 2007 (in Russian). Translated to English in Telecommunications and Radio Engineering, Begell House Publ., 2009, vol. 68, no 1, pp. 1-26.\r\n<b>5-2.<\/b> A.V. Boriskin, A.I. Nosich, S.V. Boriskina, P. Sewell, T.M. Benson, A. Altintas, &quot;Lens or resonator? &#8211; Electromagnetic behavior of an extended hemielliptic lens antenna for a sub-mm wave receiver,&quot;<i> Microwave and Optical Technology Lett.<\/i>, vol. 43, no 6, pp. 515-518, 2004. <a href=\"\/wp-content\/uploads\/2018\/12\/motl2004-lens.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>      \r\n<b>5-1.<\/b> A.V. Boriskin, A.I. Nosich, &quot;Whispering-gallery and Luneburg lens effects in a beam-fed circularly-layered dielectric cylinder,&quot;<i> IEEE Trans. Antennas and Propagation<\/i>, vol. 50, no 9, pp. 1245-1249, 2002.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap2002-luneburg.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>Dielectric Open Resonators &#8211; Complex-Frequency Eigenvalue Problems<\/h4><a name=six><\/a> \r\n<b>6-8.<\/b> V.S. Bulygin, Y.V. Gandel, A. Vukovic, T.M. Benson, P. Sewell, A.I. Nosich, &quot;Nystrom method for the Muller boundary integral equations on a dielectric body of revolution: axially symmetric problem,&quot;<i>       \tIET Microwaves, Antennas and Propagation<\/i>, vol. 9, no 11, pp. 1186-1192, 2015. <a href=\"\/wp-content\/uploads\/2018\/12\/map2015-reson.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>6-7.<\/b> S.V. Boriskina, T.M. Benson, P. Sewell, A.I. Nosich, &quot;Directional emission, increased free spectral range, and mode Q-factors of 2-D wavelength-scale optical microcavity structures,&quot;<i> IEEE J. Selected Topics in Quantum Electronics<\/i>, vol. 12, no 6, pp. 1175-1182, 2006. <b> Special Issue on Nanophotonics<\/b> <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2006-reson1.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>6-6.<\/b> S.V. Boriskina, T.M. Benson, P. Sewell, A.I. Nosich, &quot;Q factor and emission pattern control of the WG modes in notched microdisk resonators,&quot;<i> IEEE J. Selected Topics in Quantum Electronics<\/i>, vol. \t12, no 1, pp. 52-58, 2006. <b>Special Issue on Microresonators<\/b> <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2006-reson.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\t<a href=\"download\\jstqe2006-resonCOM.pdf\"><b><font size=1>[comment]<\/font><\/b><\/a>\r\n<b>6-5.<\/b> T.M. Benson, S.V. Boriskina, P. Sewell, A. Vukovic, S. Greedy, A.I. Nosich, &quot;Micro-optical resonators for microlasers and integrated optoelectronics,&quot; in S. Janz, J. Ctyroky and S. Tanev (Eds.), <i>Frontiers in Planar Lightwave Circuit Technology<\/i>, Springer NATO Ser. Mathematics, Physics and Chemistry, vol. 216, pp. 39-70, 2006. <a href=\"\/wp-content\/uploads\/2018\/12\/springer2006-reson.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>6-4.<\/b> S.V. Boriskina, T.M. Benson, P. Sewell, A.I. Nosich, &quot;Optical modes in imperfect square and triangular microcavities,&quot;<i> IEEE J. Quantum Electronics<\/i>, vol. 41, no 6, pp. 857-864, 2005. <a href=\"\/wp-content\/uploads\/2018\/12\/jqe2005-reson.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>6-3.<\/b> S.V. Boriskina, T.M. Benson, P. Sewell, A.I. Nosich, &quot;Spectral shift and Q-change of circular and square-shaped optical microcavity modes due to periodic sidewall surface roughness,&quot;<i> J. Optical Society of America B<\/i>, vol. 21, no 10, pp. \t1792-1796, 2004. <a href=\"\/wp-content\/uploads\/2018\/12\/josab2004-reson.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>6-2.<\/b> S.V. Boriskina, T.M. \tBenson,\tP. Sewell, A.I. Nosich, &quot;Highly efficient design\tof spectrally engineered whispering-gallery-mode microlaser resonators,&quot;<i> Optical and Quantum Electronics<\/i>,  vol.  35, no 4, pp. 545-559, 2003. <a href=\"\/wp-content\/uploads\/2018\/12\/oqe2003-resonC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>6-1.<\/b> S.V. Boriskina, T.M. \tBenson, P. Sewell, A.I. Nosich, &quot;Effect of a layered environment on the complex natural frequencies of 2D WG-mode dielectric-ring resonators,&quot;<i> IEEE\/OSA J. Lightwave Technology<\/i>, vol. 20, no 8, pp. 1563-1572, 2002. <a href=\"\/wp-content\/uploads\/2018\/12\/jlt2002-reson.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>Open Waveguides &#8211; Scattering and Absorption by Inhomogeneities<\/h4><a name=seven><\/a> \r\n<b>7-17.<\/b> N.L. Tsitsas, C.A. Valagiannopoulos,  A.I. Nosich, &quot;Scattering and absorption of a complex source point beam by a grounded lossy dielectric slab with a superstrate,&quot;<i> IEEE Trans. Antennas and Propagation<\/i>, 2019, submitted. <a href=\"\/wp-content\/uploads\/2018\/12\/tap2019-slabcsp.pdf\"><b><font size=1> <\/font><\/b><\/a> \r\n<b>7-16.<\/b> N.L. Tsitsas, C.A. Valagiannopoulos, A.I. Nosich, &quot;Excitation of guided waves of a lossless dielectric slab by an E-polarized complex-source-point beam,&quot;<i> IOP J. of Optics<\/i>, vol. 16, no 10, pp. 105712\/10, 2014. <a href=\"\/wp-content\/uploads\/2018\/12\/jopt2014-slab.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>7-15.<\/b> S.V. Boriskina, T.M. Benson, P. Sewell, A.I. Nosich, &quot;Tuning of elliptic whispering-gallery-mode microdisk waveguide filters,&quot; <i> IEEE\/OSA J. Lightwave Technology<\/i>, vol. 21, no 9, pp. 1987-1995, 2003. <a href=\"\/wp-content\/uploads\/2018\/12\/jlt2003-wgmfiltC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>7-14.<\/b> S.V. Boriskina, A.I. Nosich, &quot;Radiation and absorption losses of the whispering-gallery-mode dielectric resonator excited by a dielectric waveguide,&quot; <i>IEEE Trans. Microwave Theory and Techniques<\/i>, vol. MTT-47, no 2, pp. 224-231, 1999. <a href=\"\/wp-content\/uploads\/2018\/12\/tmtt1999-wgmfiltC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>7-13.<\/b> S.V. Boriskina, A.I. Nosich, &quot;Numerical analysis of the surface wave bandstop filters based on a whispering-gallery-mode dielectric resonator and a slotted metallic cavity resonator,&quot; <i>Radio Physics and \tRadio Astronomy<\/i>, Kharkiv, IRA NASU Press, vol. 2, no 3, pp. 333-341, 1997. <a href=\"\/wp-content\/uploads\/2018\/12\/rphra1997-filtersC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a> Translated to English in <i>Telecommunications and Radio Engineering<\/i>, Begell House Publ., vol. 51, no 2-3, pp. 103-111, 1997.  \r\n<b>7-12.<\/b> S.V. Boriskina, A.I. Nosich, &quot;Numerical simulation of surface-wave band-stop filters,&quot; <i>Microwave and Optical Technology Lett.<\/i>, vol. 13, no 3, pp. 169-173, 1996. <a href=\"\/wp-content\/uploads\/2018\/12\/motl1996-filtersC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>7-11.<\/b> A.I. Nosich, \t&quot;Radiation conditions, limiting absorption principle, and general relations in open \twaveguide scattering,&quot; <i>J. Electromagn. Waves and Applications<\/i>, vol. 8, no 3, pp. 329-353, 1994. <a href=\"\/wp-content\/uploads\/2018\/12\/jewa1994-radcond.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>7-10.<\/b> A.I. Nosich, A.S. Andrenko, &quot;Scattering and mode conversion by a screen-like inhomogeneity inside a dielectric-slab waveguide,&quot; <i>IEEE Trans. Microwave Theory and Techniques<\/i>, vol. MTT-42, no 2, pp. 298-307, 1994. <a href=\"\/wp-content\/uploads\/2018\/12\/mtt1994-cbap.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>7-9.<\/b> A.S. Andrenko, A.I. Nosich, &quot;H-scattering of thin-film modes from periodic gratings of finite extent,&quot; <i>Microwave and Optical Technology Lett.<\/i>, vol. 5, no 7, pp. 333-337, 1992. <a href=\"\/wp-content\/uploads\/2018\/12\/motl1992-grating.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>7-8.<\/b> A.S. Andrenko, V.V. Kryzhanovsky, A.I. Nosich, V.P. Shestopalov, &quot;Rejection filter,&quot; USSR Patent, 1990, no 1569981.\r\n<b>7-7.<\/b> A.S. Andrenko, A.I. Nosich, V.P. Shestopalov, &quot;Reciprocity theorem in problems concerning the scattering of waves by irregularities in open planar waveguides,&quot; <i>Soviet Physics Doklady<\/i>, vol. 35, no 4, \tpp. 366-368, 1990.\r\n<b>7-6.<\/b> A.S. Andrenko, A.I. Nosich, &quot;Scattering of dielectric slab modes from resonant inhomogeneities,&quot;<i> Doklady Akademii Nauk Ukrainskoi SSR<\/i>, ser. A, no 4, pp. 51-55, 1989 (in Russian).\r\n<b>7-5.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Radiation conditions and uniqueness theorems for open waveguides,&quot; <i>Soviet J. Communications Technology and Electronics\t<\/i>, vol. 34, no 2, pp. 107-115, 1989.\t<a href=\"\/wp-content\/uploads\/2018\/12\/sjcte1989-rcond.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>7-4.<\/b> A.I. Nosich, &quot;Radiation conditions for open waveguides,&quot;<i> Soviet Physics Doklady <\/i>, vol. 32, no 9, pp. 720-722, 1987. <a href=\"\/wp-content\/uploads\/2018\/12\/dan1987-radcond.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>7-3.<\/b> A.I. Nosich, &quot;Scattering of the surface wave of an open impedance waveguide by an unclosed cylindrical screen,&quot; <i>Soviet Physics &#8211; Technical Physics<\/i>, vol. 31, no 8, pp. 883-889, 1986.\r\n<b>7-2.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Self-consistent solution of the problem of diffraction by a discontinuity in an open waveguide,&quot;  <i>Soviet Physics Doklady,<\/i> vol. 30, no 9, pp. 773-775, 1985.\r\n<b>7-1.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Excitation of a partially shielded round dielectric rod by lumped sources,&quot; <i>Soviet Physics &#8211; Technical Physics<\/i>, vol. 28, no 12, pp. 1421-1426, 1983. <a href=\"\/wp-content\/uploads\/2018\/12\/sptp1983-slotline.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>Open Waveguides &#8211; Complex Wave Eigenvalue Problems<\/h4><a name=eight><\/a> \r\n<b>8-26.<\/b> Y.M. Kartchevskii, A.I. Nosich, G.W. Hanson, &quot;Mathematical analysis of the generalized natural modes of an inhomogeneous optical fiber,&quot; <i>SIAM J. Applied Mathematics<\/i>, vol. 65, no 6, pp. 2033-2048, 2005.\t<a href=\"\/wp-content\/uploads\/2018\/12\/siam2005-openw.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>8-25.<\/b> S.V. Boriskina, T.M. Benson, P. Sewell, A.I. Nosich, &quot;Highly efficient full-vectorial integral equation solution for the bound, leaky, and complex modes of dielectric waveguides,&quot; <i> IEEE J. on Selected Topics in Quantum Electronics<\/i>, vol. 8, no 6, pp. 1225-1232, 2002. <a href=\"\/wp-content\/uploads\/2018\/12\/jstqe2002-openw.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> <a href=\"download\\spd1977-cavityCOM.pdf\"><b><font size=1>[comment]<\/font><\/b><\/a>\r\n<b>8-24.<\/b> Y.M. Kartchevskii, A.I. Nosich, S.I. Solovyov, &quot;Eigenmodes of dielectric waveguides with non-sharp boundaries,&quot; <i>Trudy Matematicheskogo Tsentra (Proc. of the Mathematics Center)<\/i>, Kazan: Kazan State University Press, vol. 6, pp.79-114, 2000 (in Russian).\r\n<b>8-23.<\/b> A.I. Nosich, &quot;Foundations of the theory of open waveguides,&quot; <i> J. Telecommunications and Information Technology<\/i>, Warsaw: NIT Press, no 1-2, pp.42-45, 2000. <a href=\"\/wp-content\/uploads\/2018\/12\/jtit2000-openw.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>8-22.<\/b> L. Richard, A.I. Nosich, J.-P. Daniel, &quot;Revisiting the waves on a coated cylinder by using surface-impedance model,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. AP-47, no 8, pp. 1374-1375, 1999.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap1999-wire.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>8-21.<\/b> A.I. Nosich, A.Y. Svezhentsev, &quot;Principal and higher order modes of microstrip and slot lines on a cylindrical substrate,&quot; <i>Electromagnetics<\/i>, vol. 13, no 1, pp. 85-94, 1993. <a href=\"\/wp-content\/uploads\/2018\/12\/elect1993-wguide.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> <a href=\"\/wp-content\/uploads\/2018\/12\/elect1993-wguideCOM.pdf\"><b><font size=1>[comment]<\/font><\/b><\/a>\r\n<b>8-20.<\/b> A.I. Nosich, A.Y. Svezhentsev, &quot;Accurate computation of mode characteristics for open-layered circular cylindrical microstrip and slot lines,&quot; <i>Microwave and Optical Technology Lett.<\/i>, vol. 4, no 7, pp. 274-277, 1991.\t<a href=\"\/wp-content\/uploads\/2018\/12\/motl1991-openwC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>8-19.<\/b> A.I. Nosich, A.Y. Svezhentsev, &quot;Physical features of wave propagation in cylindrical slot and strip lines,&quot; <i>Soviet J. Communications Technology and Electronics <\/i>, vol. 35, no 1, pp. 51-59, 1990.\r\n<b>8-18.<\/b> A.I. Nosich, A.Y. Svezhentsev, &quot;On the effect of cross-sectional compactness on modes behaviour in microstrip and slot lines,&quot; <i>Proc. Asia-Pacific Microwave Conf. (APMC-90)<\/i>, Tokyo, 1990, pp. 1015-1018.\t<a href=\"\/wp-content\/uploads\/2018\/12\/ain-apmc1990slotline.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>8-17.<\/b> A.I. Nosich, A.Y. Svezhentsev, &quot;Spectral theory of principal and higher order modes in open circular cylindrical slot and strip lines,&quot; <i>Proc. URSI-B Int. Symp. Electromagnetic Theory<\/i>, Stockholm, 1989, pp. 536-538. <a href=\"\/wp-content\/uploads\/2018\/12\/ain-ursib1989slotline.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>8-16.<\/b> A.I. Nosich, A.Y. Svezhentsev, V.P. Shestoplalov, &quot;Attenuation of the slot and quasi-H11 modes in a cylindrical slot line,&quot; <i>Doklady Akademii Nauk Ukrainskoi SSR<\/i>, ser. A, no 3, pp. 45-49, 1988 (in Russian).\r\n<b>8-15.<\/b> A.I. Nosich, A.Y. Svezhentsev, V.P. Shestopalov, &quot;Electrodynamic analysis of the discrete spectrum of characteristic modes of a partially screened dielectric rod,&quot; <i>Soviet J. Communication Technology and Electronics ,<\/i> vol. 33, no 3, pp. 18-26, 1988.\r\n<b>8-14.<\/b> V.V. Kryzhanovsky, A.I. Nosich, A.Y. Svezhentsev, V.P. Shestopalov, &quot;Microstrip transmission line,&quot; USSR Patent, 1988, no 1453481\r\n<b>8-13.<\/b> A.I. Nosich, A.Y. Poedinchuk, V.P. Shestopalov, &quot;Existence of discrete spectrum and singular types of waves in an open waveguide,&quot; <i>Soviet Physics Doklady <\/i>, vol. 32, no 3, pp. 216-218, 1987.\r\n<b>8-12.<\/b> V.V. Kryzhanovsky, A.I. Nosich, A.Y. Svezhentsev, V.P. Shestopalov, &quot;Theoretical and experimental investigation of cylindrical microstrip line modes,&quot; <i>Doklady Akademii Nauk Ukrainskoi SSR<\/i>, ser. A, no 10, pp. 43-46, 1986 (in Russian).\r\n<b>8-11.<\/b> A.I. Nosich, A.Y. Svezhentsev, V.P. Shestopalov, &quot;Spectrum of quasi-TEM waves in a partially screened dielectric core,&quot; <i>Soviet Physics Doklady<\/i>, vol. 31, no 7, pp. 559-561, 1986.\r\n<b>8-10.<\/b> A.I. Nosich, A.Y. Poedinchuk, V.P. Shestopalov, &quot;Discrete spectrum of the characteristic waves in open partially screened dielectric core,&quot; <i>Soviet Physics Doklady<\/i>, vol. 30, no 8, pp. 669-671, 1985.\r\n<b>8-9.<\/b> G.I. Komar, A.I. Nosich, V.P. Shestopalov, &quot;Waveguiding properties of slotted image transmission lines,&quot; <i>Soviet J. Communication Technology and Electronics  <\/i>, vol. 30, no 2, pp. (211-217), 1985.\r\n<b>8-8.<\/b> S.D. Andrenko, V.V. Kryzhanovsky, A.I. Nosich, V.P. Shestopalov, &quot;Experimental investigation of the propagation of electromagnetic waves in a cylindrical slotted line,&quot; <i>Radio Engn. and Electronic Physics<\/i>, vol. 28, no 5, pp. 60-65, 1983.\t<a href=\"\/wp-content\/uploads\/2018\/12\/sjreep1983-slotline-ex.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>8-7.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Characteristic impedance and energy losses in a cylindrical slotted transmission line,&quot; <i>Radio Engn. and Electronic Physics<\/i>, vol. 28, no 4, pp. 51-56, 1983.\r\n<b>8-6.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Ohmic losses in transmission lines with thin conductors,&quot; <i>Soviet Physics Doklady<\/i>, vol. 25, no 2, pp. 127-128, 1980. <a href=\"\/wp-content\/uploads\/2018\/12\/spd1980-lossesCOM.pdf\"><b><font \tsize=1>[comment]<\/font><\/b><\/a>\r\n<b>8-5.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Waveguiding properties of open metallized dielectric transmission lines of the cylindrical type,&quot; <i>Radio Engn. Electronic Physics<\/i>, vol. 24, pp. 1-9, 1979.\r\n<b>8-4.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Slot line,&quot; USSR Patent, 1979, no 698085.\r\n<b>8-3. <\/b>A.I. Nosich, V.P. Shestopalov, &quot;A slotted circular microwave guide,&quot; <i>Soviet Physics Doklady<\/i>, vol. 23, no 7, pp. 505-506, 1978.\r\n<b>8-2.<\/b> E.I. Veliev, A.I. Nosich, V.P. Shestopalov, &quot;Propagation of electromagnetic waves in a cylindrical waveguide with a longitudinal slit,&quot; <i>Radio Engn. Electronic Physics<\/i>, vol. 22, pp. 29-35, 1977.<\/td>\r\n<b>8-1.<\/b> E.I. Veliev, A.I. Nosich, V.P. Shestopalov, &quot;On the theory of the slot mode,&quot; <i>Doklady Akademii Nauk Ukrainskoi SSR<\/i>, ser. A, no 10, pp. 928-931, 1976 (in Russian).\r\n<\/br>\r\n<h4>Gratings &#8211; Scattering and Absorption<\/h4><a name=nine><\/a> \r\n<b>9-5.<\/b>  V.O. Byelobrov, T.L. Zinenko, K. Kobayashi, A.I. Nosich, &quot;Periodicity matters: grating or lattice resonances in the scattering by sparse arrays of sub-wavelength strips and wires,&quot; <i>IEEE Antennas and Propagation Magazine<\/i>, vol. 57, no 6, pp. 34-45, 2015. <a href=\"\/wp-content\/uploads\/2018\/12\/apmag2015-gr-resC.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>9-4.<\/b> V.O. Byelobrov, T.M. Benson, &quot;Extraordinary high-Q resonances in the scattering by a dielectric slab containing a grating of circular cylinders,&quot; <i>Int. J. Semiconductor Physics, Quantum Electronics, and Optoelectronics<\/i>, Kiev, ISP NASU Press, vol. 17, no 1, pp. 100-105, 2014. <a href=\"\/wp-content\/uploads\/2018\/12\/byelobrov-spqeo2014.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>9-3.<\/b>  T.L. Zinenko, A.I. Nosich, &quot;Plane wave scattering and absorption by flat gratings of impedance strips,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 54, no 7, pp. 2088-2095, 2006.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap2006-grating.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>9-2.<\/b> T.L. Zinenko, A.I. Nosich, Y. Okuno, &quot;Plane wave scattering and absorption by resistive-strip and dielectric-strip periodic gratings,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 46, no 10, pp. 1498-1505, 1998. <a href=\"\/wp-content\/uploads\/2018\/12\/tap1998-gratingC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>9-1.<\/b> E.I. Veliev, A.I. Nosich, V.P. Shestopalov, &quot;Radiation of an electron flux moving over a grating consisting of cylinders with longitudinal slots,&quot; <i>Radiophysics and Quantum Electronics <\/i>, vol. 20, no 3, pp. 306-313, 1977.\t<a href=\"\/wp-content\/uploads\/2018\/12\/rfqe1977-grating.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>PEC and Resistive Screens and Cavities &#8211; Scattering and Absorption<\/h4><a name=ten><\/a> \r\n<b>10-18.<\/b> M.V. Balaban, A.I. Nosich, &quot;Radiation of complex electric and magnetic dipoles in the presence of a perfectly conducting disk,&quot; <i>Radio Physics and Electronics<\/i>, Kharkiv, IRE NASU Press, vol. 15, no 3, \tpp. 4-10, 2010 (in Russian). Translated to English in <i>Telecommunications and Radio\tEngineering<\/i>, Begell House Publ., vol. 72, no 10, pp. 841-852, 2013.\r\n<b>10-17.<\/b> M.V. Balaban, &quot;Mathematical model of electromagnetic wave diffraction by a resistive disk,&quot; <i>Radio Physics and Electronics<\/i>, Kharkiv, IRE NASU Press, vol. 10, no 1, pp. 45-50, 2005 (in Russian). Translated to English in <i>Telecommunications and Radio\tEngineering<\/i>, Begell House Publ., vol. 65, no 11, pp. 967-976, 2006.\r\n<b>10-16.<\/b> A.E. Serebryannikov, A.I. Nosich, &quot;TE-wave penetration into finite-thickness slotted circular cylinder with lossy and lossless inner coatings,&quot; <i>IEEE Trans. Electromagnetic Compatibility<\/i>, vol. 47, no 4, pp. 709-716, 2005. <a href=\"\/wp-content\/uploads\/2018\/12\/emc2005-cavity.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-15.<\/b> A.E. Serebryannikov, A.I. Nosich, &quot;TE-case RCS analysis of finite-thickness slotted circular cylinder loaded with lossy filling,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 53, no 4, pp. 1426-1434, 2005.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap2005-cbap.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-14.<\/b> S. Koshikawa, D. Colak, A. Altintas, K. Kobayashi, A.I. Nosich, &quot;A comparative study of RCS predictions of canonical rectangular and circular cavities with double-layer material loading,&quot; <i>IEICE Trans. Electronics &#8211; Japan<\/i>, vol. E80-C, no 11, pp. 1457-1466, 1997.<b>Special Issue on Electromaqgnetic Theory<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/ieice1997-cavity.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-13.<\/b> A.I. Nosich, Y. Okuno, T. Shiraishi, &quot;Scattering and absorption of E and H-polarized plane waves by a circularly curved resistive strip,&quot; <i> Radio Science<\/i>, vol. 31, no 6, pp. 1733-1742, 1996. <a href=\"\/wp-content\/uploads\/2018\/12\/rasci1996-cbap.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-12.<\/b> K. Kobayashi, A.I. Nosich, &quot;Radar cross section analysis of 2-D, canonical material-loaded cavity-backed apertures of rectangular and circular cross-section,&quot; <i> Annales des Telecommunications<\/i>, vol. 50, no 5-6, pp. 517-522, 1995.\t<b>Special Issue on Radar Cross Section of Complex Objects<\/b>\t<a href=\"\/wp-content\/uploads\/2018\/12\/anntel1995-cavity.pdf\"><b><font size=1>[pdf]<\/font><\/b> <\/a>\r\n<b>10-11.<\/b> D. Colak, A.I. Nosich, A. Altintas, &quot;Radar cross section study of cylindrical cavity-backed apertures with inner or outer material coating: the case of H-polarization,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 43, no 5, pp. 440-447, 1995. <a href=\"\/wp-content\/uploads\/2018\/12\/tap1995-cbap.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-10.<\/b> A.I. Nosich, &quot;On the theory of the two-dimensional Helmholtz resonator with a circular impedance surface,&quot; <i>Acoustics of Non-Homogeneous Media<\/i>, Novosibirsk: IHD Press, no 109, pp. 127-132, 1994 (in Russian).\r\n<b>10-9.<\/b> D. Colak, A.I. Nosich, A. Altintas, &quot;Radar cross section study of cylindrical cavity-backed apertures with outer or inner material coating: the case of E-polarization,&quot; <i> IEEE Trans. Antennas and Propagation<\/i>, vol. 41, no 11, pp. 1551-1559, 1993. <a href=\"\/wp-content\/uploads\/2018\/12\/tap1993-cbap.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-8.<\/b> N.V. Veremey, A.I. Nosich, V.V. Veremey, &quot;TE excitation of an unclosed circular cylinder at the planar penetrable interface,&quot; <i> Electromagnetics<\/i>, vol. 13, no 2, pp. 169-186, 1993. <a href=\"\/wp-content\/uploads\/2018\/12\/elect1993-grating.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-7.<\/b> N.V. Veremey, A.I. Nosich, &quot;Electrodymanic modelling of open resonators with diffraction gratings,&quot; <i>Radiophysics and Quantum Electronics<\/i>, vol. 32, no 2, pp. 166-172, 1989. <a href=\"\/wp-content\/uploads\/2018\/12\/rfqe1989-grating.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-6.<\/b> E.I. Veliev, V.V. Veremey, A.I. Nosich, V.P. Shestopalov, &quot;Radar target,&quot; USSR Patent, 1985, no 1358022.\r\n<b>10-5.<\/b> E.I. Veliev, V.V. Veremey, A.I. Nosich, V.P. Shestopalov, &quot;Trapping effect for an open screen illuminated by a fixed source,&quot; <i>Radiophysics and Quantum Electronics<\/i>, vol. 25, no 4, pp. 298-305, 1982. <a href=\"\/wp-content\/uploads\/2018\/12\/rfqe1982-cavityC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<b>10-4. <\/b>A.I. Nosich, &quot;Diffraction radiation which accompanies the motion of charged particles near an open resonator,&quot; <i>Radiophysics and Quantum Electronics<\/i>, vol. 24, no 8, pp. 1014-1021, 1981.\t<a href=\"\/wp-content\/uploads\/2018\/12\/rfqe1980-cavity.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>10-3.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;Resonant ponderomotive effects in the scattering and emission of electromagnetic waves,&quot; <i>Soviet Physics Doklady<\/i>, vol. 24, no 9, pp. 730-732, 1979.\r\n<b>10-2.<\/b> A.I. Nosich, &quot;On the effect of resonances on the scattering characteristics of a nonclosed cylinder,&quot; <i>Radiotekhnika i Elektronika<\/i>, vol. 23, no 8, pp. 1733-1737, 1978 (in Russian).\r\n<b>10-1.<\/b> A.I. Nosich, V.P. Shestopalov, &quot;An electromagnetic analog of a Helmholtz resonator,&quot; <i>Soviet Physics Doklady,<\/i>  vol. 22, no 4, pp. \t251-253, 1977. <a href=\"\/wp-content\/uploads\/2018\/12\/dan1977-cavityC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>PEC and Resistive Reflector Antennas &#8211; Scattering and Absorption<\/h4><a name=eleven><\/a> \r\n<b>11-11.<\/b> V.S. Bulygin, T.M. Benson, Y.V. Gandel, A.I. Nosich, &quot;Full-wave analysis and optimization of a TARA-like shield-assisted paraboloidal reflector antenna using a Nystrom-type method,&quot; <i> IEEE Trans. Antennas and Propagation<\/i>, vol. 61, no 10, pp. 4981-4989, 2013. <a href=\"\/wp-content\/uploads\/2018\/12\/tap2013-reflect.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>11-10.<\/b> T. Oguzer, A. Altintas, A.I. Nosich, &quot;Analysis of the elliptic profile cylindrical reflector with a non-uniform resistivity using the complex source and dual series approach: H-polarization case,&quot; <i> Optical and Quantum Electronics<\/i>, vol. 45, no 8, pp. 797-812, 2013.\t<a href=\"\/wp-content\/uploads\/2018\/12\/oqe2013-reflec.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>11-9.<\/b> T. Oguzer,\tA. Altintas, A.I. Nosich, &quot;Integral equation analysis of an arbitrary-profile and variable-resistivity cylindrical reflector illuminated by an E-polarized complex-source-point beam,&quot; <i> J. Optical Society of America A<\/i>, vol. 26, no 7, pp. 1525-1533, 2009.\t<a href=\"\/wp-content\/uploads\/2018\/12\/josaa2009-reflec.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>11-8.<\/b> T. Oguzer, A.I. Nosich, A. Altintas, &quot;Analysis of arbitrary conic section profile cylindrical reflector antenna, H-polarization case,&quot; <i> IEEE Trans. Antennas and Propagation<\/i>, vol. 52, no. 11, pp. 3156-3162, 2004. <a href=\"\/wp-content\/uploads\/2018\/12\/tap2004-reflec.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>11-7.<\/b> T. Oguzer, A.I. Nosich, A. Altintas, &quot;E-polarized beam scattering by an open cylindrical PEC strip having arbitrary &quot;conical-section&quot; profile&quot;, <i>Microwave and Optical Technology Lett.<\/i>, vol. 31, no 6, pp. 480-484, 2001.<a href=\"\/wp-content\/uploads\/2018\/12\/motl2001-reflector.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>11-6.<\/b> S.S. Vinogradov, E.D. Vinogradova, A.I. Nosich, A. Altintas, &quot;Analytical regularization based analysis of a spherical reflector symmetrically illuminated by an acoustic beam,&quot; <i>J. Acoustical Society America<\/i>, vol. 107, no 6, pp. 2999-3005, 2000.<a href=\"\/wp-content\/uploads\/2018\/12\/jasa2000-reflect.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>11-5.<\/b> S.V. Boriskina, A.I. Nosich, A. Altintas, &quot;Effect of the imperfect flat earth on the vertically-polarized radiation of a cylindrical reflector antenna,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 48, no 2, pp. 285-292, 2000.<a href=\"\/wp-content\/uploads\/2018\/12\/tap2000-reflect.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>11-4.<\/b> V.B. Yurchenko, A. Altintas, A.I. Nosich, &quot;Numerical optimization of a cylindrical reflector-in-radome antenna system,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 47, no 4, pp. 668-673, 1999.\t<a href=\"\/wp-content\/uploads\/2018\/12\/tap1999-reflect.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>11-3.<\/b> S.V. Boriskina, &quot;Numerical analysis of radiation properties of a reflector antenna near Earth&#8217;s surface,&quot; <i>Kharkiv State University Herald<\/i>, 1998, no 405, pp. 71-74 (in Russian). Translated to English in <i>Telecommunications and Radio\tEngineering<\/i>, Begell House Publ., vol. 53, no 7-8, pp. 39-42, 1999.\r\n<b>11-2.<\/b> A.I. Nosich, V.B. Yurchenko, A. Altintas, &quot;Numerically exact analysis of 2-D variable-resistivity reflector fed by a complex-point source,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 45, no 11, pp. 1592-1601, 1997.<a href=\"\/wp-content\/uploads\/2018\/12\/tap1997-reflect.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>11-1.<\/b> T. Oguzer, A. Altintas, A.I. Nosich, &quot;Accurate simulation of reflector antennas by complex source &#8211; dual series approach,&quot; <i> IEEE Trans. Antennas and Propagation<\/i>, vol. 43, no 8, pp. 793-801, 1995. <a href=\"\/wp-content\/uploads\/2018\/12\/tap1995-reflectC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>PEC and Resistive Printed and Conformal Antennas &#8211; Scattering and Absorption<\/h4><a name=twelve><\/a> \r\n<b>12-11.<\/b> V.V. Radchenko, R. Sauleau, A.I. Nosich, &quot;Radiation and absorption of waves emitted by a radial dipole in the presence a layered dielectric sphere with a spherical screen,&quot; <i>IET Microwaves, Antennas \tand Propagation<\/i>, vol. 6, no 9, pp. 1063-1069, 2012. <a href=\"\/wp-content\/uploads\/2018\/12\/map2012-head.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>12-10.<\/b> S. Rondineau, A.I. Nosich, S.S. Vinogradov, J.-P. Daniel, M. Himdi, &quot;MAR-based analysis of a spherical-circular printed antenna with a finite ground excited by an axially-symmetric probe,&quot; <i>IEEE Trans. Antennas and Propagation<\/i>, vol. 52, no 5, pp. 1270-1280, 2004. <a href=\"\/wp-content\/uploads\/2018\/12\/tap2004-scma.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a> \r\n<b>12-9.<\/b> V.V. Radchenko, &quot;Radiation from a spherical-circular microstrip patch antenna excited by a slot,&quot; <i>Radio Physics and Electronics<\/i>, Kharkiv, IRE NASU Press, vol. 7, pp. 259-264, 2002 (in Russian). Translated to English in <i>Telecommunications and Radio Engineering<\/i>, Begell House Publ., vol. 59, no 7-9, pp. 42-56, 2003.\r\n<b>12-8.<\/b> N.Y. Bliznyuk, A.I. Nosich, &quot;Numerical analysis of a dielectric disk antenna,&quot; <i> Radio Physics and Electronics<\/i>, Kharkiv, IRE NASU Press, vol. 5, no 1, pp. 49-54, 2000 (in Russian). Translated to English in <i>Telecommunications and Radio\tEngineering<\/i>, Begell House Publ., vol. 61, no 4, pp. 273-284, 2004.\r\n<b>12-7.<\/b> V.V. Radchenko, A.I. Nosich, J.-P. Daniel, S.S. Vinogradov, &quot;Radiation of a dipole antenna on the surface of a partially screened layered sphere, axially symmetric case,&quot; <i>Radio Physics and Electronics<\/i>, Kharkiv, IRE NASU Press, vol. 5, no 1, pp. 42-48, 2000 (in Russian). Translated to English in <i>Telecommunications and Radio Engineering<\/i>, Begell House Publ., vol. 55, no 4, pp. 40-49, 2001.\r\n<b>12-6.<\/b> V.V. Radchenko, A.I. Nosich, J.-P. Daniel, S.S. Vinogradov, &quot;A conformal spherical-circular microstrip antenna: axisymmetric excitation by an electric dipole,&quot; <i>Microwave and Optical Technology Lett.<\/i>, vol. 26, no 3, pp. 176-182, 2000. <a href=\"\/wp-content\/uploads\/2018\/12\/motl2000-scma.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>12-5.<\/b> N.Y. Bliznyuk, A.I. Nosich, A.N. Khizhnyak, &quot;Accurate computation of a circular-disk printed antenna axysimmetrically excited by an electric dipole,&quot; <i>Microwave and Optical Technology Lett.<\/i>, vol. 25, no 3, pp. 211-216, 2000. <a href=\"\/wp-content\/uploads\/2018\/12\/motl2000-disk.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>12-4.<\/b> N.Y. Bliznyuk, A.I. Nosich, &quot;Numerical analysis of a lossy circular microstrip antenna,&quot; <i> Radio Physics and Electronics<\/i>, Kharkiv, IRE NASU Press, vol. 4, no 3, pp. 125-128, 1999. Translated to English in <i>Telecommunications and Radio\tEngineering<\/i>, Begell House Publ., vol. 55, no 8, pp. 15-23, 2001.\r\n<b>12-3.<\/b> N.Y. Bliznyuk, &quot;Numerical simulation of a microstrip disk antenna with axially-symmetric excitation,&quot; <i>Radio Physics and Radio Astronomy<\/i>, Kharkiv, IRA NASU Press, vol. 3,\tno 1, pp. 92-98, 1998 (in Russian). Translated to English in <i>Telecommunications and Radio Engineering<\/i>, Begell House Publ., vol. 51, no 9, pp. 6-14, 1997.\r\n<b>12-2.<\/b> L. Richard, A.I. Nosich, J.-P. Daniel, &quot;Dielectric coating influence on the radiation of a narrow slot on a metallic cylinder,&quot; <i>Automatika<\/i>, Zagreb, vol. 39, no 1-2, pp. 17-21, 1998.\r\n<b>12-1.<\/b> N.Y. Bliznyuk, A.I. Nosich, &quot;Basic properties of the fields excited by VED and HMD located in a dielectric substrate backed by a perfectly conducting ground plane,&#038;quot <i>Microwave and Optical Technology Lett.<\/i>, vol. 15, no 5, pp. 316-320, 1997. <a href=\"\/wp-content\/uploads\/2018\/12\/motl1997-dipoleC.pdf\"><b><font size=1>[pdf with comments]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>History of Microwaves<\/h4><a name=thirteen><\/a> \r\n<b>13-8.<\/b> A.I. Nosich, &quot;Dramatic history and impact of decimeter-wave radar \u201cZenit\u201d developed in Kharkiv in the 1930s,&quot; <i>Proc. Int. Workshop Direct and Inverse Problems of Electromagnetic and Acoustic Wave Theory (DIPED-2017)<\/i>, Dnipro, 2017, pp. 11-14. <a href=\"\/wp-content\/uploads\/2018\/12\/an-diped2017zenit.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>13-7.<\/b> T.L. Zinenko, &quot;Yevgeny M. Kuleshov, human delta-function in Ukrainian microwave science and technology,&quot; <i>Proc. IEEE Ukraine Conf. Electrical Computer Eng. (UKRCON-2017)<\/i>, Kiev, 2017, pp. 1225-1228. <a href=\"\/wp-content\/uploads\/2018\/12\/zinenko-ukrcon2017kuleshov.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>13-6.<\/b> A.I. Nosich, A.A. Kostenko, &quot;In the labor people&#8217;s name: development of 60-kW magnetrons in the artificial famine plagued Ukraine in the early 1930s,&quot; <i>Proc. Int. Conf. Origins and Evolution of the Cavity Magnetron (CAVMAG-2010)<\/i>, Bournemouth, 2010, pp. 82-88. <a href=\"\/wp-content\/uploads\/2018\/12\/anak-cavmag2010.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>13-5.<\/b> A.A. Kostenko, A.I. Nosich, P.F. Goldsmith, &quot;Historical background and development of Soviet quasioptics at near-millimeter and sub-millimeter wavelengths,&quot; Ch. 15 in T. Sarkar (Ed.), <i>History of Wireless<\/i>, New York:  Wiley, pp. 473-542, 2006. <a href=\"\/wp-content\/uploads\/2018\/12\/wiley2006-qoptics.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>13-4.<\/b> A.A. Kostenko, A.I. Nosich, I.A. Tishchenko, &quot;Magnetron and radar drama in Kharkov, Ukraine in the 1920-1930s,&quot; in H. Rohling (Ed.), <i>101 Years of Radar<\/i>, Bonn: German Institute of Navigation, pp. 123-132, 2005.\r\n<b>13-3.<\/b> I.A. Tishchenko, A.I. Nosich, &quot;Early quasioptics of near-millimeter and submillimeter waves in IRE-Kharkov, Ukraine: From ideas to the microwave pioneer award,&quot; <i>IEEE Microwave Magazine<\/i>, vol. 4, no. 4, pp. 32-44, 2003.\t<a href=\"\/wp-content\/uploads\/2018\/12\/mwmag2003-kuleshov.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>13-2.<\/b> A.I. Nosich, Y.M. Poplavko, D.M. Vavriv, F.J. Yanovsky, &quot;Microwaves in Ukraine,&quot; <i>IEEE Microwave Magazine<\/i>, vol. 2, no. 4, pp. 82-90, 2002.\t<a href=\"\/wp-content\/uploads\/2018\/12\/mwmag2002-ukraine.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<b>13-1.<\/b> A.A. Kostenko, A.I. Nosich, I.A. Tishchenko, &quot;Development of the first Soviet three-coordinate L-band pulsed radar in Kharkov before WWII,&quot; <i>IEEE Antennas and Propagation Magazine<\/i>, vol. 44, no. 3, pp. 29-48, 2001. <a href=\"\/wp-content\/uploads\/2018\/12\/apmag2001-radar.pdf\"><b><font size=1>[pdf]<\/font><\/b><\/a>\r\n<\/br>\r\n<h4>Others<\/h4><a name=fourteen><\/a> \r\n<b>14-3.<\/b> M.V. Balaban, A.V. Somov, &quot;Increasing the directivity of a circular antenna array,&quot; <i>Radio Physics and Electronics<\/i>, IRE NASU, Kharkiv, vol. 19, no 3, pp. 9-19, 2010 (in Russian). Translated into English in <i>Telecommunications and Radio Engineering<\/i>, Begell House Publ., vol. 74, no 13, pp. 1129-1146, 2015.\r\n<b>14-2.<\/b>  G.W. Hanson, A.I. Nosich, Y.M. Karchevskii, &quot;Green&#8217;s function expansions in dyadic root functions for shielded layered waveguide problems obtained via residue theory,&quot; <i>Progress in Electromagnetic Research,<\/i> vol. 39, pp. 61-91, 2003.\r\n<b>14-1.<\/b> A.E. Serebryannikov, A.I. Nosich, D.M. Vavriv, &quot;Limiting parameters of groove modes of a magnetron-type cavity,&quot; <i>J. Electromagnetic Waves and Applications<\/i>, vol. 12, no 9, pp. 1203-1216, 1998.","protected":false},"excerpt":{"rendered":"<p>Publications of LMNO Classified by Topics Method of analytical regularization and Nystrom-type methods Micro and nano lasers &#8211; LEPs Plasmon and periodicity assisted optical sensors &#8211; scattering and absorption Graphene-based THz antennas and sensors &#8211; scattering and absorption Dielectric screens, lenses and radomes &#8211; scattering and absorption Dielectric open resonators &#8211; eigenvalue problems Open waveguides [&hellip;]<\/p>\n","protected":false},"author":6,"featured_media":0,"parent":2036,"menu_order":20,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-5619","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/pages\/5619","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/users\/6"}],"replies":[{"embeddable":true,"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/comments?post=5619"}],"version-history":[{"count":5,"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/pages\/5619\/revisions"}],"predecessor-version":[{"id":9482,"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/pages\/5619\/revisions\/9482"}],"up":[{"embeddable":true,"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/pages\/2036"}],"wp:attachment":[{"href":"https:\/\/www.ire.kharkov.ua\/en\/wp-json\/wp\/v2\/media?parent=5619"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}