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基于遗传算法辅助的使用等离子体超材料的超宽带完美吸收器。

Genetic-algorithm-aided ultra-broadband perfect absorbers using plasmonic metamaterials.

作者信息

Mayer Alexandre, Bi Hai, Griesse-Nascimento Sarah, Hackens Benoit, Loicq Jérome, Mazur Eric, Deparis Olivier, Lobet Michaël

出版信息

Opt Express. 2022 Jan 17;30(2):1167-1181. doi: 10.1364/OE.442405.

DOI:10.1364/OE.442405
PMID:35209282
Abstract

Complete absorption of electromagnetic waves is paramount in today's applications, ranging from photovoltaics to cross-talk prevention into sensitive devices. In this context, we use a genetic algorithm (GA) strategy to optimize absorption properties of periodic arrays of truncated square-based pyramids made of alternating stacks of metal/dielectric layers. We target ultra-broadband quasi-perfect absorption of normally incident electromagnetic radiations in the visible and near-infrared ranges (wavelength comprised between 420 and 1600 nm). We compare the results one can obtain by considering one, two or three stacks of either Ni, Ti, Al, Cr, Ag, Cu, Au or W for the metal, and poly(methyl methacrylate) (PMMA) for the dielectric. More than 10 configurations of geometrical parameters are explored and reduced to a few optimal ones. This extensive study shows that Ni/PMMA, Ti/PMMA, Cr/PMMA and W/PMMA provide high-quality solutions with an integrated absorptance higher than 99% over the considered wavelength range, when considering realistic implementation of these ultra-broadband perfect electromagnetic absorbers. Robustness of optimal solutions with respect to geometrical parameters is investigated and local absorption maps are provided. Moreover, we confirm that these optimal solutions maintain quasi-perfect broadband absorption properties over a broad angular range when changing the inclination of the incident radiation. The study also reveals that noble metals (Au, Ag, Cu) do not provide the highest performance for the present application.

摘要

在当今的应用中,从光伏到防止对敏感设备的串扰,电磁波的完全吸收至关重要。在此背景下,我们采用遗传算法(GA)策略来优化由金属/电介质交替堆叠制成的截顶方基金字塔周期性阵列的吸收特性。我们的目标是在可见光和近红外范围内(波长在420至1600纳米之间)实现对垂直入射电磁辐射的超宽带准完美吸收。我们比较了通过考虑金属使用Ni、Ti、Al、Cr、Ag、Cu、Au或W中的一种、两种或三种堆叠,以及电介质使用聚甲基丙烯酸甲酯(PMMA)所能获得的结果。探索了超过10种几何参数配置,并将其简化为几种最优配置。这项广泛的研究表明,在考虑这些超宽带完美电磁吸收体的实际应用时,Ni/PMMA、Ti/PMMA、Cr/PMMA和W/PMMA在考虑的波长范围内提供了集成吸收率高于99%的高质量解决方案。研究了最优解相对于几何参数的稳健性,并提供了局部吸收图谱。此外,我们证实,当改变入射辐射的倾斜度时,这些最优解在很宽的角度范围内保持准完美的宽带吸收特性。该研究还表明,贵金属(Au、Ag、Cu)在本应用中并未提供最高性能。

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