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基于二维全介质手性超表面实现同时具备宽带和高圆二色性

Simultaneous broadband and high circular dichroism with two-dimensional all-dielectric chiral metasurface.

作者信息

Wang Rui, Wang Chenqian, Sun Ti, Hu Xin, Wang Chinhua

机构信息

School of Optoelectronic Science and Engineering, Soochow University, Suzhou 215006, China.

Key Lab of Advanced Optical Manufacturing Technologies of Jiangsu Province & Key Lab of Modern Optical Technologies of Education Ministry of China, Soochow University, Suzhou 215006, China.

出版信息

Nanophotonics. 2023 Oct 13;12(21):4043-4053. doi: 10.1515/nanoph-2023-0407. eCollection 2023 Oct.

Abstract

Chiral metasurfaces have great potential in various applications such as polarimetric imaging and biomedical recognition. However, simultaneous broadband and high circular dichroism (CD) with high polarization extinction ratio (PER) remains a challenge. Here, we present a novel approach to realize simultaneous broadband and high CD with high PER in the optical communication band using a two-dimensional all-dielectric chiral metasurface. The structure is formed by a two-level chiral structure of split cross (first-order) and trapezoid-shaped (second-order) of Si nano ribs, respectively, in which constructively coupled first- and second-order of chirality occurs, resulting in the broad chiral response in the far field of multipoles excited by incident light of different chiralities. Theoretical results show that a CD in transmission reaching 0.9 (up to 0.993) and a PER exceeding 20 dB (up to 35 dB) over the entire wavelength range from 1.39 to 1.61 μm can be achieved simultaneously, consistent with the experimental results of CD ∼0.9 and PER of 10 dB (up to 19.7 dB). Our design paves the way for chiral metasurfaces toward practical applications in terms of working bandwidth, high CD and PER as well as integrality of the devices in many fields.

摘要

手性超表面在偏振成像和生物医学识别等各种应用中具有巨大潜力。然而,同时实现宽带、高圆二色性(CD)以及高偏振消光比(PER)仍然是一个挑战。在此,我们提出了一种新颖的方法,利用二维全介质手性超表面在光通信波段实现同时具有宽带、高CD以及高PER的特性。该结构分别由硅纳米肋的两级手性结构形成,即十字形(一阶)和梯形(二阶),其中一阶和二阶手性发生相长耦合,从而在不同手性的入射光激发的多极子远场中产生宽广的手性响应。理论结果表明,在1.39至1.61μm的整个波长范围内,透射中的CD可达到0.9(高达(0.993)),PER超过20dB(高达35dB),这与CD约为0.9且PER为10dB(高达19.7dB)的实验结果一致。我们的设计在工作带宽、高CD和PER以及器件在许多领域的完整性方面为手性超表面的实际应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1d1/11501280/332e6fb247dd/j_nanoph-2023-0407_fig_001.jpg

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