Conferencia

El editor no permite incluir ninguna versión del artículo en el Repositorio.
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

We analyze the diffraction of a plane wave by a diffraction (surface-relief) grating made of an Isotropic negative phase-velocity material. Three different approaches are employed, and the results are compared with those for conventional (i.e., positive phase-velocity) materials. Resonant excitation of surface waves on the new types of gratings is examined.

Registro:

Documento: Conferencia
Título:Planewave diffraction by gratings made of isotropic negative phase-velocity materials
Autor:Depine, R.A.; Lakhtakia, A.; McCall M.W.; Dewar G.
Ciudad:Denver, CO
Filiación:Grupo de Electromagnetismo Aplicado, Departamento de Física, Ciudad Universitaria, Pabellón I, 1428 Buenos Aires, Argentina
Compl. and Theor. Mat. Sci. Group, Department of Engineering Science, Pennsylvania State University, University Park, PA 16802-6812, United States
Photonics Section, Department of Physics, Imperial College London, London SW7 2BZ, United Kingdom
Palabras clave:Grating; Negative phase velocity; Nonspecular diffraction; Numerical techniques; Specular diffraction; Surface waves; Boundary value problems; Dielectric materials; Diffraction gratings; Maxwell equations; Surface waves; Vectors; Nonspecular diffraction; Numerical techniques; Phase velocity; Specular diffraction; Electromagnetic wave diffraction
Año:2004
Volumen:5508
Página de inicio:268
Página de fin:276
DOI: http://dx.doi.org/10.1117/12.559546
Título revista:Complex Mediums V: Light and Complexity
Título revista abreviado:Proc SPIE Int Soc Opt Eng
ISSN:0277786X
CODEN:PSISD
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_0277786X_v5508_n_p268_Depine

Referencias:

  • Harrison, G.R., The production of diffraction gratings I. Development of the ruling art (1949) J. Opt. Soc. Am., 39, pp. 413-426
  • Maystre, D., (1992) Selected Papers on Diffraction Gratings, , Bellingham, WA, USA: SPIE Optical Engineering Press
  • Lakhtakia, A., Varadan, V.V., Varadan, V.K., Scattering by periodic achiral-chiral interfaces (1989) J. Opt. Soc. Am. A, 6, pp. 1675-1681. , corrections: 7, p. 951, 1990
  • Lester, M., Depine, R.A., Reflection of electromagnetic waves at the corrugated boundary between permeable dielectrics (1994) J. Phys. D: Appl. Phys., 27, pp. 2451-2456
  • Shelby, R.A., Smith, D.R., Schultz, S., Experimental verification of a negative index of refraction (2001) Science, 292, pp. 77-79
  • Lakhtakia, A., McCall, M.W., Weiglhofer, W.S., Brief overview of recent developments on negative phase-velocity mediums (alias left-handed materials) (2002) Arch. Elektron. Übertrag., 56, pp. 407-410
  • Pendry, J.B., Focus issue: Negative refraction and metamaterials (2003) Opt. Exp., 11, pp. 639-760
  • Lakhtakia, A., McCall, M.W., Weiglhofer, W.S., Negative phase-velocity mediums (2003) Introduction to Complex Mediums for Optics and Electromagnetics, , W. S. Weiglhofer and A. Lakhtakia (eds), Bellingham, WA, USA: SPIE Press
  • 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
  • Born, M., Wolf, E., (1980) Principles of Optics, 6th Ed., , Oxford, United Kingdom: Pergamon Press
  • Waterman, P.C., Scattering by periodic surfaces (1975) J. Acoust. Soc. Am., 57, pp. 791-802
  • Depine, R.A., Lakhtakia, A., Planewave diffraction at the periodically corrugated boundary of vacuum and a negative phase-velocity material (2004) Phys. Rev. E, , in press; [physics/0402095]
  • Depine, R.A., Lakhtakia, A., Perturbative approach for diffraction due to a periodically corrugated boundary between vacuum and a negative phase-velocity material (2004) Opt. Commun., 233, pp. 225-456
  • Van Den Berg, P.M., Reflection by a grating: Rayleigh methods (1981) J. Opt. Soc. Am., 71, pp. 1224-1229
  • Rayleigh, L., On the dynamical theory of gratings (1907) Proc. R. Soc. Lond. A, 79, pp. 399-416
  • Chuang, S.-L., Kong, J.A., Scattering from periodic surfaces (1981) Proc. IEEE, 69, pp. 1132-1144
  • Chandezon, J., Maystre, D., Raoult, G., A new theoretical method for diffraction gratings and its numerical application (1980) J. Opt. (Paris), 11, pp. 235-241
  • Li, L., Chandezon, J., Granet, G., Plumey, J., Rigorous and efficient grating-analysis method made easy for optical engineers (1999) Appl. Opt., 38, pp. 304-313
  • Maradudin, A., Interaction of surface polaritons and plasmons with surface roughness (1982) Surface Polaritons, , V. Agranovich and D. L. Mills (eds), Amsterdam, The Netherlands: North-Holland
  • Lester, M., Depine, R.A., Scattering of electromagnetic waves at the corrugated interface between index-matched media (1996) Opt. Commun., 132, pp. 135-143
  • Depine, R.A., Gigli, M.L., Diffraction from corrugated gratings made with uniaxial crystals: Rayleigh methods (1994) J. Modern Opt., 41, pp. 695-715
  • Lopez, C., Yndurain, F., García, N., Iterative series for calculating the scattering of waves from a hard corrugated surface (1978) Phys. Rev. B, 18, pp. 970-972
  • Maradudin, A.A., Iterative solution for electromagnetic scattering by gratings (1983) J. Opt. Soc. Am., 73, pp. 759-764
  • Lakhtakia, A., On planewave remittances and Goos-Hänchen shifts of planar slabs with negative real permittivity and permeability (2003) Electromagnetics, 23, pp. 71-75
  • Inchaussandague, M.E., Depine, R.A., Polarization conversion from diffraction gratings made of uniaxial cyrstals (1996) Phys. Rev. E, 54, pp. 2899-2911
  • Boardman, A.D., (1982) Electromagnetic Surface Modes, , New York, NY, USA: Wiley
  • Ruppin, R., Surface polaritons of a left-handed medium (2000) Phys. Lett. A, 277, pp. 61-64
  • Shadrivov, I., Sukhorukov, A., Kivshar, Y., Zharov, A., Boardman, A., Egan, P., Nonlinear surface waves in left-handed materials (2004) Phys. Rev. E, 69, p. 016617A4 - SPIE - The International Society for Optical Engineering; Colorado Photonics Industry Association, CPIA

Citas:

---------- APA ----------
Depine, R.A., Lakhtakia, A., McCall M.W. & Dewar G. (2004) . Planewave diffraction by gratings made of isotropic negative phase-velocity materials. Complex Mediums V: Light and Complexity, 5508, 268-276.
http://dx.doi.org/10.1117/12.559546
---------- CHICAGO ----------
Depine, R.A., Lakhtakia, A., McCall M.W., Dewar G. "Planewave diffraction by gratings made of isotropic negative phase-velocity materials" . Complex Mediums V: Light and Complexity 5508 (2004) : 268-276.
http://dx.doi.org/10.1117/12.559546
---------- MLA ----------
Depine, R.A., Lakhtakia, A., McCall M.W., Dewar G. "Planewave diffraction by gratings made of isotropic negative phase-velocity materials" . Complex Mediums V: Light and Complexity, vol. 5508, 2004, pp. 268-276.
http://dx.doi.org/10.1117/12.559546
---------- VANCOUVER ----------
Depine, R.A., Lakhtakia, A., McCall M.W., Dewar G. Planewave diffraction by gratings made of isotropic negative phase-velocity materials. Proc SPIE Int Soc Opt Eng. 2004;5508:268-276.
http://dx.doi.org/10.1117/12.559546