介电-韦尔半金属-介电叠层实现高品质因数和统一圆二色性

IF 2.7 Q2 PHYSICS, CONDENSED MATTER Micro and Nanostructures Pub Date : 2024-06-21 DOI:10.1016/j.micrna.2024.207916
Ye Yang , Sicheng Xu , Liming Qian , Gaige Zheng
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引用次数: 0

摘要

本文提出了一种基于硅(Si)/韦尔半金属(WSM)/硅多层薄膜的中红外(mid-IR)手性吸收器,并对其进行了数值研究。该方案对右旋圆偏振光(RCP)和左旋圆偏振光(LCP)具有不同的吸收特性,表现出高品质因数圆二色性(CD)。利用广义 4 × 4 转移矩阵算法探索了吸收特性,并系统地研究了结构参数对圆偏振(CP)吸收率的影响。圆偏振效率 (η) 和 CD 被定义为量化手性响应的关键参数。结果证明,在 11.5 μm 波长处,手性吸收器对 LCP 和 RCP 光的效率分别为 1 和 0。因此,吸收的最大 CD 值为 1,谐振品质因数(Q 因子)为 295。双波段手性响应的性能可以通过各层的厚度来设计。此外,该设计还具有与角度无关的性能,而这正是高效手性吸收器的基本特征。
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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High quality factor and unity circular dichroism enabled by dielectric-Weyl semimetal-dielectric stack

A mid-infrared (mid-IR) chiral absorber based on multilayer films of silicon (Si)/Weyl semimetal (WSM)/Si is proposed and numerically studied. The proposal exhibits high quality factor circular dichroism (CD) with different absorptance properties for right-hand circular polarization (RCP) and left-hand circular polarization (LCP) light. The absorption characteristics have been explored with the generalized 4 × 4 transfer matrix algorithm, and the effects of structural parameters on the circularly polarized (CP) absorptance are systematically investigated. The circular polarization efficiency (η) and CD are defined as crucial parameters for quantifying the chirality response. The results prove that the chiral absorber exhibits extraordinary efficiencies of 1 and 0 for LCP and RCP light at a wavelength of 11.5 μm, respectively. Thus a maximum CD in absorption of unity with a resonant quality factor (Q-factor) of 295 can be obtained. The performance of dual-band chiral responses can be engineered via the thickness of each layer. Moreover, it is identified that the design results in angle-independent performance, which is essential trait for an efficient chiral absorber.

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