Published October 2009 | Version v1
Journal article

Transmission gap, Bragg-like reflection, and Goos-Haenchen shifts near the Dirac point inside a negative-zero-positive index metamaterial slab

  • 1. Departamento de Quimica-Fisica, UPV-EHU, Apartado 644, 48080 Bilbao (Spain)
  • 2. Department of Physics, Shanghai University, 200444 Shanghai (China)
  • 3. Department of Physics, Zhejiang University, Hangzhou 310027 (China)
  • 4. Department of Physics, Chinese University of Hong Kong, Shatin, New Territories (Hong Kong)

Description

Motivated by the realization of the Dirac point (DP) with a double-cone structure for optical field in the negative-zero-positive index metamaterial (NZPIM), the reflection, transmission, and Goos-Haenchen (GH) shifts inside the NZPIM slab are investigated. Due to the linear Dirac dispersion, the transmission as the function of the frequency has a gap, thus, the corresponding reflection has a frequency or wavelength window for the perfect reflection, which is similar to the Bragg reflection in the one-dimensional photonic crystals. Near the DP, the associated GH shifts in the transmission and reflection can be changed from positive to negative with increasing the wavelength. These negative and positive shifts can also be enhanced by transmission resonances when the frequency is far from that at the DP. All these phenomena will lead to some potential applications in the integrated optics and optical devices.

Additional details

Publishing Information

Journal Title
Physical Review. A
Journal Volume
80
Journal Issue
4
Journal Page Range
p. 043839-043839.5
ISSN
1050-2947
CODEN
PLRAAN

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
41060039
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Descriptors DEI
AUGMENTATION; BRAGG REFLECTION; CRYSTALS; EQUIPMENT; LIGHT TRANSMISSION; ONE-DIMENSIONAL CALCULATIONS; OPTICAL DISPERSION; VISIBLE RADIATION; WAVELENGTHS
Descriptors DEC
ELECTROMAGNETIC RADIATION; RADIATIONS; REFLECTION; TRANSMISSION

Optional Information

Notes
(c) 2009 The American Physical Society