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Articles

Electromagnetic scattering of an inhomogeneous elliptically polarized plane wave by a multilayered sphere

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Pages 492-504 | Received 21 Sep 2015, Accepted 13 Nov 2015, Published online: 02 Feb 2016

References

  • Aden AL, Kerker M. Scattering of electromagnetic waves from two concentric spheres. J. Appl. Phys. 1951;22:1242–1246.
  • Chew WC. Waves and fields in inhomogeneous media. New York (NY): Van Nostrand Reinhold; 1990.
  • Bhandari R. Scattering coefficients for a multilayered sphere: analytic expressions and algorithms. Appl. Opt. 1985;24:1960–1967.
  • Mackowski DW, Altenkirch RA, Menguc MP. Internal absorption cross sections in a stratified sphere. Appl. Opt. 1990;29:1551–1559.
  • Onofri F, Gréhan G, Gouesbet G. Electromagnetic scattering from a multilayered sphere located in an arbitrary beam. Appl. Opt. 1995;34:7113–7124.
  • Stout B, Andraud C, Stout S, et al. Absorption in multiple-scattering systems of coated spheres. J. Opt. Soc. Am. A. 2003;20:1050–1059.
  • Wu ZS, Wang YPY. Electromagnetic scattering for multilayered sphere: recursive algorithms. Radio Sci. 1991;26:1393–1401.
  • Johnson BR. Light scattering by a multilayer sphere. Appl. Opt. 1996;35:3286–3296.
  • Peña O, Pal U. Scattering of electromagnetic radiation by a multilayered sphere. Comput. Phys. Commun. 2009;180:2348–2354.
  • Chen TW. Scattering of light by a stratified sphere in high energy approximation. Appl. Opt. 1987;26:4155–4158.
  • Mangini F, Tedeschi N, Frezza F, et al. Homogenization of a multilayer sphere as a radial uniaxial sphere: features and limits. J. Electromagn. Waves Appl. 2014;28:916–931.
  • Mangini F, Tedeschi N, Frezza F, et al. Electromagnetic interaction with two eccentric spheres. J. Opt. Soc. Am. A. 2014;31:783–789.
  • Frezza F, Mangini F, Pajewski L, et al. A spectral-domain method for the electromagnetic scattering by a buried sphere. J. Opt. Soc. Am. A. 2013;30:783–790.
  • Frezza F, Mangini F, Tedeschi N. Electromagnetic scattering by two concentric spheres buried in a stratified material. J. Opt. Soc. Am. A. 2015;32:277–286.
  • Khoo IC, Werner DH, Liang X, et al. Nanosphere dispersed liquid crystals for tunable negative-zero-positive index of refraction in the optical and terahertz regimes. Opt. Lett. 2006;31:2592–2594.
  • Feng Y, Zheng H, Zhub Z, et al. The microstructure and electrical conductivity of aluminum alloy foams. Elsevier Mater. Chem. Phys. 2002;78:196–201.
  • Ziolkowski RW, Erentok A. Metamaterial-based efficient electrically small antenna. Opt. Lett. 2006;54:2113–2129.
  • Taminiau TH, Stefani FD, van Hulst NF. Enhanced directional excitation and emission of single emitters by a nano-optical Yagi-Uda antenna. Opt. Express. 2008;16:10858–10866.
  • Jain PK, Lee KS, El-Sayed IH, et al. Calculated absorption and scattering properties of gold nanoparticles of different size, shape, and composition: applications in biological imaging and biomedicine. J. Phys. Chem. B. 2006;110:7238–7248.
  • Asami K, Gheorghiu E, Yonezawa T. Real-time monitoring of yeast cell division by dielectric spectroscopy. Biophys. J. 1999;76:3345–3348.
  • Frezza F, Mangini F, Muzi M, et al. In silico validation procedure for cell volume fraction estimation through dielectric spectroscopy. J. Biol. Phys. 2014;40:223–234.
  • Chew H, Wang DS, Kerker M. Elastic scattering of evanescent electromagnetic waves. Appl. Opt. 1979;18:2679–2687.
  • Liu C, Kaiser T, Lange S, et al. Structural resonances in a dielectric sphere illuminated by an evanescent wave. Opt. Commun. 1995;117:521–531.
  • Chang S, Kim JT, Jo JH, et al. Optical force on a sphere caused by the evanescent field of a Gaussian beam; effects of multiple scattering. Opt. Commun. 1997;139:252–261.
  • Zvyagin AV, Goto K. Mie scattering of evanescent waves by a dielectric sphere: comparison of multipole expansion and group-theory methods. J. Opt. Soc. Am. A. 1998;15:3003–3008.
  • Lock J. Scattering of the evanescent components in the angular spectrum of a tightly focused electromagnetic beam by a spherical particle. J. Quant. Spectrosc. Radiat. Transfer. 2015;162:95–102.
  • Abelès F. Recherches sur la propagation des ondes électromagnétiques sinusoidales dans les milieux stratifiés [Research on the propagation of electromagnetic sinusoidal waves in stratified media]. Ann. Phys. 1950;5:596–640.
  • Born M, Wolf E. Principles of optics. 7th ed. London: Cambridge University Press; 1999.
  • Ivlev EI. Structure and properties of inhomogeneous waves. J. Mod. Opt. 1987;34:1559–1569.
  • Adler RB, Chu LJ, Fano RM. Electromagnetic energy transmission and radiation. New York (NY): Wiley; 1972.
  • Frezza F, Mangini F. Vectorial spherical-harmonics representation of an inhomogeneous elliptically polarized plane wave. J. Opt. Soc. Am. A. 2015;32:1379–1383.
  • Stratton JA. Electromagnetic theory. New York (NY): McGraw-Hill; 1941.
  • Rother T. Electromagnetic wave scattering on nonspherical particles. New York (NY): Springer; 2009.
  • Tsang L, Kong JA, Ding KH. Scattering of electromagnetic waves: theories and applications. New York (NY): Wiley; 2000.
  • Abramowitz M, Stegun I. Handbook of mathematical functions. New York (NY): Dover; 1972.

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