Metasurface engineering via evolutionary processes

K. Allen, D. Dykes, D. Reid, J. Bean, D. Landgren, R. T. Lee, D. Denison
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引用次数: 4

Abstract

Metasurfaces enable a new avenue to engineered responses of the electromagnetic scattering characteristics through the control and manipulation of the wavefronts. The wavefronts are tuned by altering deeply sub-wavelength structural features on the metasurface. In this work, a heuristic technique is used where the conductive topology of the metasurfaces for a fixed form factor is optimized by a multi-objective genetic algorithm mimicking evolutionary processes. Analysis is performed for the engineered metasurface responses for frequency-selectivity, absorption, rasorber characteristics, and photonic nanojet generation. Computational electromagnetic simulations for these engineered metasurfaces are presented and discussed. The concepts presented in this work can be applied to design metasurfaces and metamaterials from the microwave to the optical regimes.
通过进化过程的超表面工程
超表面通过对波前的控制和操纵,为电磁散射特性的工程响应提供了一条新的途径。通过改变超表面上的深度亚波长结构特征来调谐波前。在这项工作中,使用了一种启发式技术,其中通过模拟进化过程的多目标遗传算法优化固定形状因子的元表面的导电拓扑。分析了工程超表面响应的频率选择性,吸收,吸收特性和光子纳米射流的产生。提出并讨论了这些工程超表面的计算电磁模拟。在这项工作中提出的概念可以应用于设计从微波到光学体制的超表面和超材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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