Sun Fei, Liu Yichao, He Sailing
Opt Express. 2020 Jan 6;28(1):94-106. doi: 10.1364/OE.379817.
A multi-physics null medium that performs as a perfect endoscope for both electromagnetic and acoustic waves is designed by transformation optics, which opens a new way to control electromagnetic and acoustic waves simultaneously. Surface transformation multi-physics, which is a novel graphical method to design multi-physics devices, is proposed based on the directional projecting feature of a multi-physics null medium. Many multi-physics devices, including beam shifters, scattering reduction, imaging devices and beam steering devices, for both electromagnetic and acoustic waves can be simply designed in a surface-corresponding manner. All devices designed by surface transformation multi-physics only need one homogeneous anisotropic medium (null medium) to realize, which can be approximately implemented by a brass plate array without any artificial sub-wavelength structures. Numerical simulations are given to verify the performances of the designed multi-physics devices made of brass plate array.
通过变换光学设计了一种对电磁波和声波都能起到完美内窥镜作用的多物理零介质,这为同时控制电磁波和声波开辟了一条新途径。基于多物理零介质的定向投影特性,提出了表面变换多物理,这是一种设计多物理器件的新颖图形方法。许多用于电磁波和声波的多物理器件,包括波束移位器、散射减少、成像器件和波束转向器件,都可以通过表面对应方式简单设计。由表面变换多物理设计的所有器件仅需一种均匀各向异性介质(零介质)即可实现,这可以通过黄铜板阵列近似实现,无需任何人工亚波长结构。给出了数值模拟以验证由黄铜板阵列制成的所设计多物理器件的性能。