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Homogeneous Multifunction Devices Designing and Layered Implementing Based on Rotary Medium

机译:基于旋转介质的同类多功能设备设计与分层实现

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摘要

Multifunctional device with homogeneous anisotropic material parameters are proposed and designed based on linear transformation optics and rotary medium. Four examples including rotating concentrator, rotating amplifying device, rotating shrinking device and rotating transparent device are reported. All of them have bi-functional effects, i.e., they possess concentrating, amplifying, shrinking and transparent effects respectively while have the fields been rotated an angle of π/N simultaneously in common, where N is the sides number of polygon. All these devices have potential applications, such as energy accumulation or controlling, military camouflage, wireless communication system and radar/antenna protection. Furthermore, alternating isotropic layered structure based on effective medium theory is utilized to remove the anisotropic property of these devices. Simulation results show that the layered structure device behaves almost as perfect as the ideal one when it has sufficient divided layers. The feasibility of designing multifunctional device by natural isotropic materials instead of metamaterials with complicated artificial composite structure would dramatically reduce the fabrication difficulty and move the device a step further towards the practical application.
机译:提出并设计了基于线性变换光学和旋转介质的各向异性材料参数均一的多功能装置。报告了四个例子,包括旋转集中器,旋转放大装置,旋转收缩装置和旋转透明装置。它们都具有双重功能,即它们分别具有集中,放大,缩小和透明的效果,同时使场共同同时旋转π/ N角,其中N是多边形的边数。所有这些设备都有潜在的应用,例如能量累积或控制,军事伪装,无线通信系统和雷达/天线保护。此外,基于有效介质理论的交替各向同性分层结构被用来消除这些器件的各向异性。仿真结果表明,当分层结构器件具有足够的分隔层时,其性能几乎与理想器件一样完美。用天然的各向同性材料代替具有复杂的人工复合结构的超材料来设计多功能设备的可行性将大大降低制造难度,并使该设备向实际应用迈进了一步。

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