Electromagnetic Scattering from a PEMC Circular Cylinder Coated by Topological Insulator (TI)

作者

  • A. Shahzad Department of Electronics, Quaid-i-Azam University, Islamabad, Pakistan (45320)
  • A. Illahi Research in Modeling and Simulation (RIMS) Group, Department of Physics COMSATS Institute of Information Technology, Islamabad, Pakistan
  • S. Ahmed Department of Electronics, Quaid-i-Azam University, Islamabad, Pakistan (45320)
  • A. Hussain Department of Electronics, Quaid-i-Azam University, Islamabad, Pakistan (45320)
  • Q. A. Naqvi Department of Electronics, Quaid-i-Azam University, Islamabad, Pakistan (45320)

关键词:

Cladding, insulating, isolated, polarization, topological

摘要

Scattering of electromagnetic plane wave from a perfect electromagnetic conducting (PEMC) cylinder coated with a topological insulating (TI) material has been presented. The core (PEMC) and cladding material (TI) produce co- and cross-polarized components of electromagnetic field in response to the incident plane wave for a given polarization (TE or TM). When the value of ? is made zero, TI material becomes ordinary dielectric and the results of PEMC coated with TI with ? = 0 (dielectric material) have been compared with the previously published literature and are found in good agreement. When the coating is removed, same results as that of isolated PEMC circular cylinder have also been reproduced.

##plugins.generic.usageStats.downloads##

##plugins.generic.usageStats.noStats##

参考

A. Karch “Surface plasmons and topological insulators,” Physical Review B, vol. 83, pp. 245- 432, 2011.

X. L. Qi and S. C. Zhang, “Topological insulators and superconductors,” Rev. Mod. Phys., vol. 83, pp. 1057-1110, 2011.

L. Zeng, R. Song, and X. Jian, “Scattering of electromagnetic radiations by time reversal perturbation topological circular cylinder,” Modern Physics Letters B, vol. 27, pp. 13500981-7, 2013.

M. A. Ashraf and M. A. Fiaz, “Scattering from a topological insulator cylinder buried below a slightly rough surface,” Journal of Modern Optics, vol. 62, pp. 340-347, 2015.

M. Akhtar, N. A. Naz, M. A. Fiaz, and Q. A. Naqvi, “Scattering from topological insulator circular cylinder buried in a semi-infinite medium,” Journal of Modern Optics, vol. 61, pp. 697-702, 2014.

F. Ashraf, S. Ahmed, A. A. Syed, and Q. A. Naqvi, “Electromagnetic scattering from a topological insulator cylinder placed in chiral medium,” International Journal of Applied Electromagnetics and Mechanics, vol. 47, pp. 237-244, 2015.

I. V. Lindell and A. H. Sihvola, “Realization of the PEMC boundary,” IEEE Trans. Antennas Propagat., vol. 53, no. 9, pp. 3012-3018, 2005.

J. R. Wait, “Scattering of plane waves from a circular dielectric cylinder at oblique incidence,” Can. J. of Phys., vol. 33, pp. 189-195, 1995.

H. C. Chen and D. K. Cheng, “Scattering of electromagnetic waves by an anisotropic plasmacoated conducting cylinder,” IEEE Trans. Antennas Propagat., vol. AP-12, pp. 348-353, 1964.

M. W. McCall, A. Lakhtakia, and W. S. Weiglhofer, “The negative index of refraction demystify,” Eur. J. Phys., vol. 23, pp. 353-359, 2002.

K. E Peiponen, V. Lucarini, E. M. Artiainen, and J. J. Saarinen, “Kramer-Kronig relations and sum rules of negative refractive index media,” Eur. Phys. J. B, vol. 41, pp. 61-65, 2004.

A.-K. Hamid “Scattering from an arbitrarily incident plane wave by a PEMC elliptic cylinder confocally coated with a chiral material,” ACES Journal, vol. 30, no. 5, pp. 503-509, May 2015.

S. Shoukat, S. Ahmed, M. A. Ashraf, A. A. Syed, and Q. A. Naqvi, “Scattering of electromagnetic plane wave from a chiral cylinder placed in chiral metamaterials,” Journal of Electromagnetic Waves and Applications, vol. 27, no. 9, pp. 1127-1135, 2013.

K. Muhammad, A. A. Syed, and Q. A. Naqvi, “Circular cylinder with DB boundary conditions in chiral and chiral nihility media,” International Journal of Applied Electromagnetic and Mechanics, vol. 44, pp. 59-68, Jan. 2014.

D. Cheng and Y. M. M. Antar, “Scattering from a perfect electric conductor cylinder with inhomogeneous coating thickness of gyroelectric chiral medium extended mode-matching method,” ACES Journal, vol. 14, no. 2, pp. 59-66, July 1999.

S. Ahmed and Q. A. Naqvi, “Electromagnetic scattering from chiral coated nihility cylinder,” Progress In Electromagnetic Research Letters, vol. 18, pp. 41-50, 2010.

S. Ahmed and Q. A. Naqvi, “Scattering of electromagnetic waves by a coated nihility cylinder,” Int. Journal of Infrared and Millimeter Waves, vol. 30, pp. 1044-1052, 2009.

A. Lakhtakia, “An electromagnetic trinity from “negative permittivity” and “negative permeability”,” Int. J. Infrared Millim. Waves, vol. 23, pp. 813-8, 2002.

A. Lakhtakia, “An electromagnetic trinity from “negative permittivity” and “negative permeability”,” Int. J. Infrared Millim. Waves, vol. 22, pp. 1731- 1734, 2001.

I. V. Lindell and A. H. Sihvola, “Perfect electromagnetic conductor,” Journal of Electromagnetic Waves and Applications, vol. 19, no. 7, pp. 861-869, 2005.

I. V. Lindell and A. H. Sihvola, “Possible applications of perfect electromagnetic conductor (PEMC) media,” First European Conference on Antennas and Propagation, EuCAP, 2006.

R. Ruppin, “Scattering of electromagnetic radiation by a perfect electromagnetic conductor cylinder,” J. of Electromagnetic. Waves and Appl., vol. 20, no. 13, pp. 1853-1860, 2006.

S. Ahmed and Q. A. Naqvi, “Electromagnetic scattering from a perfect electromagnetic conductor cylinder coated with a metamaterial having negative permittivity and/or permeability,” Opt. Communication, vol. 281, pp. 5664-5670, 2008.

A. Shahzad, S. Ahmed, and Q. A. Naqvi, “Analysis of electromagnetic field due to a buried coated PEMC circular cylinder,” Optics Communications, vol. 283, pp. 4563-4571, 2010.

A. Shahzad, F. Qasim, S. Ahmed, and Q. A. Naqvi, “Cylindrical invisibility cloak incorporating PEMC at perturbed void region,” Progress in Electromagnetics Research M, vol. 21, pp. 61-76, 2011.

A. Ghaffar, M. Z. Yaqoob Majeed, A. S. Alkanhal, M. Sharif, Q. A. Naqvi, and Y. Ando, “Electromagnetic scattering from anisotropic plasma-coated perfect electromagnetic conductor cylinders,” AEUE International Journal of Electronics and Communication, vol. 68, pp. 767-772, 2014.

##submission.downloads##

已出版

2021-08-08

栏目

General Submission