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基于光热电效应的手性超表面的中红外圆偏振敏感光电探测器。

Mid-infrared circular-polarization-sensitive photodetector based on a chiral metasurface with a photothermoelectric effect.

出版信息

Appl Opt. 2023 Mar 20;62(9):2292-2299. doi: 10.1364/AO.486815.

Abstract

Photothermoelectric conversion in chiral metasurfaces with thermoelectric material provides an effective way to achieve circular polarization recognition. In this paper, we propose a circular-polarization-sensitive photodetector in a mid-infrared region, which is mainly composed of an asymmetric silicon grating, a film of gold (Au), and the thermoelectric layer. The asymmetric silicon grating with the Au layer achieves high circular dichroism absorption due to a lack of mirror symmetry, which results in a different temperature increasing on the surface of the layer under right-handed circularly polarized (RCP) and left-handed circularly polarized (LCP) excitation. Then the chiral Seebeck voltage and output power density are obtained, thanks to the thermoelectric effect of . All the works are based on the finite element method, and the simulation results are conducted by the Wave Optics module of COMSOL, which is coupled with the Heat Transfer module and Thermoelectric module of COMSOL. When the incident flux is 1.0/ , the output power density under RCP (LCP) light reaches 0.96 / (0.01 / ) at a resonant wavelength, which achieves a high capability of detecting circular polarization. Besides, the proposed structure shows a faster response time than that of other plasmonic photodetectors. Our design provides a novel, to the best of our knowledge, method for chiral imaging, chiral molecular detection, and so on.

摘要

手性超表面中的光热电转换与热电材料相结合,为实现圆偏振识别提供了一种有效的方法。本文提出了一种中红外圆偏振敏感光电探测器,主要由非对称硅光栅、金(Au)薄膜和热电层组成。由于缺乏镜像对称,具有 Au 层的非对称硅光栅实现了高圆二色吸收,导致在右手圆偏振(RCP)和左手圆偏振(LCP)激发下,层表面的温度升高不同。然后利用热电效应获得了手性塞贝克电压和输出功率密度。所有工作都是基于有限元法,通过 COMSOL 的波光学模块进行模拟,该模块与 COMSOL 的热传递模块和热电模块耦合。当入射通量为 1.0/ 时,在共振波长下,RCP(LCP)光的输出功率密度达到 0.96 / (0.01 / ),实现了对圆偏振的高检测能力。此外,与其他等离子体光探测器相比,所提出的结构具有更快的响应时间。我们的设计为手性成像、手性分子检测等提供了一种新颖的、据我们所知的方法。

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