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From the generalized reflection law to the realization of perfect anomalous reflectors

机译:从广义反射定律到完美反常反射器的实现

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摘要

The use of the generalized Snell’s law opens wide possibilities for the manipulation of transmitted and reflected wavefronts. However, known structures designed to shape reflection wavefronts suffer from significant parasitic reflections in undesired directions. We explore the limitations of the existing solutions for the design of passive planar reflectors and demonstrate that strongly nonlocal response is required for perfect performance. A new paradigm for the design of perfect reflectors based on energy surface channeling is introduced. We realize and experimentally verify a perfect design of an anomalously reflective surface using an array of rectangular metal patches backed by a metallic plate. This conceptually new mechanism for wavefront manipulation allows the design of thin perfect reflectors, offering a versatile design method applicable to other scenarios, such as focusing reflectors, surface wave manipulations, or metasurface holograms, extendable to other frequencies.
机译:广义斯涅尔定律的使用为操纵透射波和反射波前开辟了广阔的可能性。然而,设计成使反射波前成形的已知结构在不希望的方向上遭受大量的寄生反射。我们探索了无源平面反射器设计的现有解决方案的局限性,并证明了强烈的非局部响应是实现完美性能所必需的。介绍了一种基于能量表面通道设计完美反射器的新范例。我们认识到并通过实验验证了使用由金属板支撑的矩形金属补丁阵列对异常反射表面的完美设计。这种用于波前操纵的概念上新颖的机制允许设计薄的完美反射器,从而提供了一种适用于其他场景的通用设计方法,例如可扩展到其他频率的聚焦反射器,表面波操纵或超表面全息图。

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