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首页> 外文期刊>Journal of optics >Preserving omnidirectionality in optimized asymmetric transformation optics designs
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Preserving omnidirectionality in optimized asymmetric transformation optics designs

机译:在优化的不对称变换光学设计中保持全向性

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Optimization techniques are efficient methods to simplify the design of transformation optics devices. Asymmetric devices obtained through these methods typically lose omnidirectionality and perform well only when illuminated from a finite set of directions. We present here an optimization approach that results in simplified, omnidirectional designs of fairly large bandwidths. The method leverages a class of coordinate transformations that result in transformation media whose material parameters follow identical isocontours. We show that discretizing these media in a finite number of layers that follow the common isocontours and optimizing the material parameters inside each layer is an effective way to significantly simplify the design complexity while preserving most of the original performance including omnidirectionality.
机译:优化技术是简化转换光学器件设计的有效方法。通过这些方法获得的非对称设备通常会失去全向性,并且仅当从有限的一组方向进行照明时才能表现良好。我们在这里介绍一种优化方法,该方法可导致带宽相当大的简化的全向设计。该方法利用了一类坐标转换,该转换导致转换介质的材料参数遵循相同的等高线。我们表明,在遵循通用等值线的有限数量的层中离散化这些介质并优化每一层内部的材料参数是有效简化设计复杂性的同时保留大多数原始性能(包括全向性)的有效方法。

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