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光电可调步长太赫兹探测器:关于最佳天线参数、速度和温度性能的研究

Photoelectric tunable-step terahertz detectors: a study on optimal antenna parameters, speed, and temperature performance.

作者信息

Chen Ran, Xia Ruqiao, Griffiths Jonathan, Beere Harvey E, Ritchie David A, Michailow Wladislaw

机构信息

Cavendish Laboratory, University of Cambridge, CB3 0HE Cambridge, UK.

Swansea University, Singleton Park, Sketty, Swansea SA2 8PP, UK.

出版信息

Nanophotonics. 2024 Feb 1;13(10):1917-1928. doi: 10.1515/nanoph-2023-0864. eCollection 2024 Apr.

Abstract

Field effect transistors have shown promising performance as terahertz (THz) detectors over the past few decades. Recently, a quantum phenomenon, the in-plane photoelectric effect, was discovered as a novel detection mechanism in gated two-dimensional electron gases (2DEGs), and devices based on this effect, photoelectric tunable-step (PETS) THz detectors, have been proposed as sensitive THz detectors. Here, we demonstrate a PETS THz detector based on GaAs/AlGaAs heterojunction using a dipole antenna. We investigate the dependence of the in-plane photoelectric effect on parameters including the dimensions and the operating temperature of the device. Two figures of merit within the 2DEG, the maximum electric field and the radiation-induced ac-potential difference, are simulated to determine the optimal design of the PETS detector antenna. We identify the optimal antenna gap size, metal thickness, and 2DEG depth, and demonstrate the first PETS detector with a symmetric dipole antenna, which shows high-speed detection of 1.9 THz radiation with a strong photoresponse. Our findings deepen the understanding of the in-plane photoelectric effect and provide a universal guidance for the design of future PETS THz detectors.

摘要

在过去几十年中,场效应晶体管作为太赫兹(THz)探测器展现出了令人期待的性能。最近,一种量子现象——面内光电效应,被发现是栅控二维电子气(2DEG)中的一种新型探测机制,基于这种效应的器件——光电可调步长(PETS)太赫兹探测器,已被提议作为灵敏的太赫兹探测器。在此,我们展示了一种基于GaAs/AlGaAs异质结并使用偶极天线的PETS太赫兹探测器。我们研究了面内光电效应与包括器件尺寸和工作温度等参数之间的关系。对二维电子气中的两个品质因数——最大电场和辐射诱导的交流电位差进行了模拟,以确定PETS探测器天线的最佳设计。我们确定了最佳天线间隙尺寸、金属厚度和二维电子气深度,并展示了首个具有对称偶极天线的PETS探测器,该探测器对1.9太赫兹辐射具有高速探测能力且光响应强烈。我们的研究结果加深了对面内光电效应的理解,并为未来PETS太赫兹探测器的设计提供了通用指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0aaa/11501986/5fb666bc3e26/j_nanoph-2023-0864_fig_001.jpg

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