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Tytuł artykułu

Electromagnetic wave propagation through frequency-dispersive and lossy double-negative slab

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Języki publikacji
EN
Abstrakty
EN
This study presents the electromagnetic wave propagation through the frequency-dispersive and lossy double-negative slab embedded between two different semi-infinite media. The double-negative slab is realized by using two models, the Lorentz andDrude medium models. The properties and the required equations for the frequency-dispersive and lossy double-negative slab, the Lorentz medium and Drude medium are given in detail. After the construction of the problem, the reflection and transmission coefficients are derived for both TE and TM waves. Then, the reflected, transmitted and loss powers are deter­mined using these coefficients. Finally, in the numerical results, the mentioned powers for TE and TM waves are computed and illustrated as a function of the incidence angle, the frequency and the slab thickness when the damping frequency changes.
Twórcy
autor
autor
  • University of Gaziantep, Electrical and Electronics Engineering Department, 27310 Gaziaqntep, Turkey, sabah@gantep.edu.tr
Bibliografia
  • 1. V.G. Veselago, "The electrodynamics of substances with simultaneously negative values of Ε and µ", Soviet Physics Uspekhi 10, 509-514 (1968).
  • 2. J.B. Pendry, A.J. Holden, W.J. Stewart, and I. Youngs, "Extremely low frequency plasmons in metallic mesostructures", Phys. Rev. Lett. 76, 4773-4776 (1996).
  • 3. J.B. Pendry, A.J. Holden, D.J. Robbins, and W.J. Stewart, "Magnetism from conductors and enhanced nonlinear phenomena", IEEE Transactions on Microwave Theory and Techniques 47, 2075-2084 (1999).
  • 4. D.R. Smith, W.J. Padilla, D.C. Vier, S.C. Nemat-Nasser, and S. Schultz, "Composite medium with simultaneously negative permeability and permittivity", Phys. Rev. Lett. 84, 4184-4187 (2000).
  • 5. R.A. Shelby, D.R. Smith, and S. Schultz, "Experimental verification of a negative index of refraction", Science 292, 77-79 (2001).
  • 6. P.M. Valanju, R.M. Valser, and A.P. Valanju, "Wave refraction in negative-index media: always positive and very inhomogeneous", Phys. Rev. Lett. 88, (187401) 1-4 (2002).
  • 7. J.B. Pendry, and D.R. Smith, "Comment on wave refraction in negative-index media: always positive and very inhomogeneous", Phys. Rev. Lett. 90, 029703-1 (2003).
  • 8. J.A. Kong, "Electromagnetic wave interaction with stratified negative isotropic media", Progress in Electromagnetics Research 35, 1-52 (2002).
  • 9. N. Engheta, "Metamaterials with negative permittivity and permeability: background, salient features, and new trends", IEEE MTT-S Int. Microwave Symp. Digest 1, 187-190 (2003).
  • 10. W.C. Chew, "Some reflections on double negative materials", Progress in Electromagnetics Research 51, 1-26 (2005).
  • 11. C. Sabah, G. Ögücü, and S. Uckun, "Power analysis of plane waves through a double-negative slab", 4th Int. Workshop on Electromagnetic Wave Scattering - EWS'2006, Gebze Institute of Technology, Gebze, Kocaeli, Turkey, p. 11.61-11.66(2006).
  • 12. C. Sabah, G. Ögücü, and S. Uckun, "Reflected and transmitted powers of electromagnetic wave through a double-negative slab", J. Optoelectronics and Advanced Materials 8, 1925-1930 (2006).
  • 13. R.W. Ziolkowski and E. Heyman, "Wave propagation in media having negative permittivity and permeability", Phys. Rev. E64, 056625-1-056625-15 (2001).
  • 14. S.A. Tretyakov, "Meta-material with wideband negative permittivity and permeability", Microwave and Optical Techn. Lett. 31, 163-165 (2001).
  • 15. C. Caloz, C.C. Chang, and T. Itoh, "Full-wave verification of the fundamental properties of left-handed materials in waveguide configurations", J. Appl. Phys. 90, 5483-5486 (2001).
  • 16. R.W. Ziolkowski, "Pulsed and CW Gaussian beam interactions with double negative metamaterial slabs", Optic Express 11, 662-681 (2003).
  • 17. D.R. Smith, J.B. Pendry, and M.C.K. Wiltshire, "Metamaterials and negative refractive index", Science 305, 788-792 (2004).
  • 18. S.F. Mahmoud, and A.J. Viitanen, "Surface wave character on a slab of metamaterial with negative permittivity and permeability", Progress in Electromagnetics Research 51, 127-137 (2005).
  • 19. W. Shu, and J.M. Song, "Wave propagation in grounded dielectric slabs with double negative metamaterials", Progress in Electromagnetics Research Symposium 2006, Cambridge, p. 246-250 (2006).
  • 20. K. Guven, and E. Ozbay, "Near field imaging in microwave regime using double layer splitring resonator based metamaterial", Opto-Electron. Rev. 14, 213-216 (2006).
  • 21. J.B. Pendry, "Negative refraction makes a perfect lens", Phys. Rev. Lett. 85, 3966-3969 (2000).
  • 22. T.J. Cui, and J.A. Kong, "Time-domain electromagnetic energy in a frequency-dispersive left-handed medium", Phys. Rev. B70, (205106) 1-7 (2004).
  • 23. D.H. Staelin, A.W. Morgenthaler, and J.A. Kong, "Electromagnetic Waves", Prentice Hall Int. Editions, New Jersey, 1994.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA9-0012-0002
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