Emoto Akira, Nishi Masaya, Okada Makoto, Manabe Sayaka, Matsui Shinji, Kawatsuki Nobuhiro, Ono Hiroshi
Department of Electrical Engineering, Nagaoka University of Technology, 1603-1 Kamitomioka, Nagaoka, Niigata 940-2188, Japan.
Appl Opt. 2010 Aug 10;49(23):4355-61. doi: 10.1364/AO.49.004355.
We theoretically investigate optical birefringence originating from subwavelength structures in intrinsic birefringent media. Assuming alternating layers of isotropic and anisotropic materials, the propagation of optical waves is simulated on the basis of the finite difference time domain method. Optical polarization changes throughout the structure reveal the birefringence of the layered structure as a whole. In addition, the birefringence is also analyzed on the basis of effective medium theory. The results indicate that the optical birefringence of the structure as a whole can be modified by the magnitude and direction of the intrinsic birefringence of the anisotropic layers. This theoretical prediction will be useful for micro- and nanofabrication in optical devices.
我们从理论上研究了本征双折射介质中亚波长结构产生的光学双折射。假设由各向同性和各向异性材料交替组成的层状结构,基于时域有限差分法对光波的传播进行了模拟。光在整个结构中的偏振变化揭示了整个层状结构的双折射特性。此外,还基于有效介质理论对双折射进行了分析。结果表明,整个结构的光学双折射可通过各向异性层本征双折射的大小和方向进行调节。这一理论预测将有助于光学器件的微纳制造。