Artículo

Estamos trabajando para incorporar este artículo al repositorio
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

Comparison of guided wave propagation (a) in a parallel-plate waveguide with perfectly conducting walls and filled with either real or ideal photonic bad gap (PBG) multilayers whose unit cell comprises a positive phase velocity and a negative phase velocity layers, and (b) in the stratification direction as well as obliquely in the same PBG multilayers but of infinite transverse extent assists in the explanation of several band-gap features and reflectance peaks, particularly those associated with zero average refractive index, computed for (a). © 2006 Wiley Periodicals, Inc.

Registro:

Documento: Artículo
Título:Ideal and real PBG multilayers of negative and positive phase velocity materials in a parallel-plate waveguide
Autor:Depine, R.A.; Ricci, M.L.M.; Lakhtakia, A.
Filiación:Grupo de Electromagnetismo Aplicado, Departamento de Física, Ciudad Universitaria, Pabellón 1, 1428 Buenos Aires, Argentina
Department of Engineering Science and Mechanics, CATMAS - Computational and Theoretical Materials Sciences Group, Pennsylvania State University, University Park, PA 16802-6812, United States
Palabras clave:Bragg condition; Fabry-Perot condition; Multilayer; Negative phase velocity; Parallel-plate waveguide; Photonic band gap; Bragg condition; Fabry-Perot condition; Negative phase velocity; Parallel-plate waveguide; Photonic band gap; Multilayers; Photons; Refractive index; Velocity measurement; Optical waveguides
Año:2006
Volumen:48
Número:10
Página de inicio:1945
Página de fin:1953
DOI: http://dx.doi.org/10.1002/mop.21817
Título revista:Microwave and Optical Technology Letters
Título revista abreviado:Microwave Opt Technol Lett
ISSN:08952477
CODEN:MOTLE
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_08952477_v48_n10_p1945_Depine

Referencias:

  • Yeh, P., (1988) Optical Waves in Layered Media, , Wiley, New York
  • Baumeister, P.W., (2004) Optical Coating Technology, , SPIE Press, Bellingham, WA
  • Focus issue: Negative refraction and metamaterials (2003) Opt Express, 11. , J. Pendry (Ed.)
  • Focus issue on negative refraction (2005) New J Phys, 7. , A. Lakhtakia and M. McCall (Eds.)
  • Lakhtakia, A., McCall, M.W., Weiglhofer, W.S., Negative phase-velocity mediums (2003) Introduction to Complex Mediums for Electromag-netics and Optics, pp. 347-363. , W.S. Weiglhofer and A. Lakhtakia (Eds.). SPIE Press, Bellingham, WA
  • Felbacq, D., Zolla, F., Scattering theory of photonic crystals (2003) Introduction to Complex Mediums for Electromagnetics and Optics, pp. 365-393. , W.S. Weiglhofer and A. Lakhtakia (eds), SPIE Press, Bellingham. WA
  • McCall, M.W., Lakhtakia, A., Weiglhofer, W.S., The negative index of refraction demys-tified (2002) Eur J Phys, 23, pp. 353-359
  • Mackay, T.G., Lakhtakia, A., Plane waves with negative phase velocity in Faraday chiral mediums (2004) Phys Rev E, 69, p. 026602
  • Boardman, A.D., King, N., Velasco, L., Negative refraction in perspective (2005) Electromag-neties, 25, pp. 365-389
  • Gerardin, J., Lakhtakia, A., Negative index of refraction and distributed Bragg reflectors (2002) Microw Opt Technol Lett, 34, pp. 409-411
  • Gerardin, J., Lakhtakia, A., Spectral response of Cantor multilayers made of materials with negative refractive index (2002) Phys Lett A, 301, pp. 377-381
  • Zhang, Z.M., Fu, C.J., Unusual photon tunneling in the presence of a layer with a negative refractive index (2002) Appl Phys Lett, 80, pp. 1097-1099
  • Li, J., Zhou, L., Chan, C.T., Sheng, P., Photonic band gap from a stack of positive and negative index materials (2003) Phys Rev Lett, 90, p. 083901
  • Wu, L., He, S., Chen, L., On unusual narrow transmission bands for a multi-layered periodic structure containing left-handed materials (2003) Opt. Express, 11, pp. 1283-1290
  • Lakhtakia, A., An electromagnetic trinity from "negative permittivity" and "negative permeability," (2001) Int J Infrared Millim Waves, 22, pp. 1731-1734
  • (2002) Int J Infrared Millim Waves, 23, pp. 813-818
  • Lakhtakia, A., Sherwin, J.A., Orthorhombic materials and perfect lenses (2003) Int J Infrared Millim Waves, 24, pp. 19-23
  • Pendry, J.B., Negative refraction (2004) Contemp Phys, 45, pp. 191-202
  • Lakhtakia, A., On perfect lenses and nihility (2002) Int J Infrared Millim. Waves, 23, pp. 339-343
  • Gómez, Á., Lakhtakia, A., Solano, M.A., Vegas, A., Parallel-plate waveguides with Kronig Penney morphology as photonic band gap filters (2003) Microw Opt Technol Lett, 38, pp. 511-514
  • Solano, M.A., Gómez, Á., Lakhtakia, A., Vargas, A., Rigorous analysis of guided wave propagation of dielectric electromagnetic band-gaps in a rectangular waveguide (2005) Int J Electron, 92, pp. 117-130
  • Jackson, J.D., (1999) Classical Electrodynamics, , Wiley, New York
  • Srivastava, S.K., Ojha, S.P., Ramesh, K.S., Design of an ultraviolet filter based on pho-tonic band-gap materials (2002) Microw Opt Technol Lett, 33, pp. 308-314. , Corrections: 36 (2003), 147
  • Depine, R.A., Lakhtakia, A., A new condition to identify Isotropic dielectric magnetic materials displaying negative phase velocity (2004) Microw Opt Technol Lett, 41, pp. 315-316
  • Abelès, F., Recherches sur la propagation des ondes électromagnétiques sinusoïdales dans les milieux stratifiés. Application aux conches minces (1950) Ann Phys (Paris), 5, pp. 596-640
  • (1996) Selected Papers on Linear Optical Composite Materials, pp. 558-580. , A. Lakhtakia (Ed.), SPIE Press, Bellingham, WA
  • Griffiths, D.J., Steinke, C.A., Waves in locally periodic media (2001) Am. J. Phys, 69, pp. 137-154
  • Depine, R.A., Martínez-Ricci, M.L., Monsoriu, J., Silvestre, E., Andrés, P., Zero permeability and zero permittivity band gaps in 1D metamaterial photonic crystals Phys Rev Lett, , arxiv: physics/0606069

Citas:

---------- APA ----------
Depine, R.A., Ricci, M.L.M. & Lakhtakia, A. (2006) . Ideal and real PBG multilayers of negative and positive phase velocity materials in a parallel-plate waveguide. Microwave and Optical Technology Letters, 48(10), 1945-1953.
http://dx.doi.org/10.1002/mop.21817
---------- CHICAGO ----------
Depine, R.A., Ricci, M.L.M., Lakhtakia, A. "Ideal and real PBG multilayers of negative and positive phase velocity materials in a parallel-plate waveguide" . Microwave and Optical Technology Letters 48, no. 10 (2006) : 1945-1953.
http://dx.doi.org/10.1002/mop.21817
---------- MLA ----------
Depine, R.A., Ricci, M.L.M., Lakhtakia, A. "Ideal and real PBG multilayers of negative and positive phase velocity materials in a parallel-plate waveguide" . Microwave and Optical Technology Letters, vol. 48, no. 10, 2006, pp. 1945-1953.
http://dx.doi.org/10.1002/mop.21817
---------- VANCOUVER ----------
Depine, R.A., Ricci, M.L.M., Lakhtakia, A. Ideal and real PBG multilayers of negative and positive phase velocity materials in a parallel-plate waveguide. Microwave Opt Technol Lett. 2006;48(10):1945-1953.
http://dx.doi.org/10.1002/mop.21817