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基于临界耦合的单层黑磷中动态可调谐窄带各向异性全吸收

Dynamically tunable narrowband anisotropic total absorption in monolayer black phosphorus based on critical coupling.

作者信息

Li Yong, Wang Shiyu, Ou Yanghong, He Guoli, Zhai Xiang, Li Hongjian, Wang Lingling

出版信息

Opt Express. 2021 Jan 18;29(2):2909-2919. doi: 10.1364/OE.416430.

DOI:10.1364/OE.416430
PMID:33726477
Abstract

A dynamically tunable anisotropic narrowband absorber based on monolayer black phosphorous (BP) is proposed in the terahertz (THz) band. The proposed absorber consists of a monolayer BP and a silicon (Si) grating, which is placed on a silica (SiO) isolation layer and a gold (Au) substrate. The benefit from the critical coupling mechanism with guided resonance is the efficiency of the absorption can reach 99.9% in the armchair (AC) direction and the natural anisotropy of BP makes it only 87.2% in the zigzag (ZZ) direction. Numerical and theoretical studies show that the absorption efficiency of the structure is operatively controlled by critical coupling conditions, including the geometric parameters of the Si grating, the electron doping of BP and the angle of incident light, etc. More importantly, in the absence of plasmon response, this structure greatly enhances the interaction between light and matter in monolayer BP. In particular, there are several advantages in this structure, such as extremely high-efficiency absorption, excellent tunability, outstanding intrinsic anisotropy and easy manufacturing, which will show unusual and promising potential applications in the design of BP-based tunable high-performance devices.

摘要

提出了一种基于单层黑磷(BP)的太赫兹(THz)波段动态可调各向异性窄带吸收器。该吸收器由单层BP和硅(Si)光栅组成,置于二氧化硅(SiO)隔离层和金(Au)衬底上。受益于与导模共振的临界耦合机制,在扶手椅(AC)方向上吸收效率可达99.9%,而BP的固有各向异性使其在锯齿(ZZ)方向上仅为87.2%。数值和理论研究表明,该结构的吸收效率可通过临界耦合条件有效控制,包括Si光栅的几何参数、BP的电子掺杂以及入射光角度等。更重要的是,在没有等离子体响应的情况下,该结构极大地增强了单层BP中光与物质的相互作用。特别是,该结构具有若干优点,如极高的吸收效率、出色的可调性、显著的固有各向异性以及易于制造等,这将在基于BP的可调高性能器件设计中展现出非同寻常且极具潜力的应用前景。

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