Rahm M, Roberts D A, Pendry J B, Smith D R
Department of Electrical and Computer Engineering, Center for Metamaterials and Integrated Plasmonics, Duke University, Durham, NC 27708, USA.
Opt Express. 2008 Jul 21;16(15):11555-67. doi: 10.1364/oe.16.011555.
We describe the design of adaptive beam bends and beam splitters with arbitrary bend and split angles by use of finite embedded coordinate transformations. The devices do not exhibit reflection at the entrance or exit surfaces. It is shown that moderate and practically achievable values of the relative permittivity and permeability can be obtained for beam bends and splitters with both small and large bend radius. The devices are also discussed in the context of reconfigurable metamaterials, in which the bend and split angles can be dynamically tuned. The performance of adaptive beam bends and splitters is demonstrated in full wave simulations based on a finite-element method. Furthermore, the design of an adaptively adjustable transformation-optical beam expander/compressor is presented. It is observed that a pure transformation-optical design cannot result in a reflectionless beam expander/compressor.
我们描述了通过使用有限嵌入坐标变换来设计具有任意弯曲和分裂角度的自适应光束弯曲器和光束分离器。这些器件在入口或出口表面不产生反射。结果表明,对于具有小和大弯曲半径的光束弯曲器和分离器,可以获得相对介电常数和磁导率的适度且实际可实现的值。还在可重构超材料的背景下讨论了这些器件,其中弯曲和分裂角度可以动态调整。基于有限元方法的全波模拟展示了自适应光束弯曲器和分离器的性能。此外,还提出了一种自适应可调变换光学光束扩展器/压缩器的设计。据观察,纯变换光学设计无法实现无反射的光束扩展器/压缩器。