Drachev Vladimir P, Podolskiy Viktor A, Kildishev Alexander V
Department of Physics and Center for Advanced Research & Technology, University of North Texas, Denton, TX 76203, USA.
Opt Express. 2013 Jun 17;21(12):15048-64. doi: 10.1364/OE.21.015048.
Hyperbolic materials enable numerous surprising applications that include far-field subwavelength imaging, nanolithography, and emission engineering. The wavevector of a plane wave in these media follows the surface of a hyperboloid in contrast to an ellipsoid for conventional anisotropic dielectric. The consequences of hyperbolic dispersion were first studied in the 50's pertaining to the problems of electromagnetic wave propagation in the Earth's ionosphere and in the stratified artificial materials of transmission lines. Recent years have brought explosive growth in optics and photonics of hyperbolic media based on metamaterials across the optical spectrum. Here we summarize earlier theories in the Clemmow's prescription for transformation of the electromagnetic field in hyperbolic media and provide a review of recent developments in this active research area.
双曲材料具有许多令人惊讶的应用,包括远场亚波长成像、纳米光刻和发射工程。与传统各向异性电介质中的椭球体不同,这些介质中平面波的波矢遵循双曲面。双曲色散的影响最早在50年代就与电磁波在地球电离层和传输线分层人工材料中的传播问题相关联进行了研究。近年来,基于超材料的双曲介质在整个光谱范围内的光学和光子学领域取得了爆发式增长。在此,我们总结了克莱姆ow关于双曲介质中电磁场变换的早期理论,并对这一活跃研究领域的最新进展进行综述。