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2D Materials for Terahertz Modulation

机译:用于太赫兹调制的2D材料

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Terahertz waves spanning over the 0.1 to 10 THz region of the electromagnetic spectrum have attracted significant attention owing to a variety of potential applications such as short-range high-speed data transmission, noninvasive screening and detection, materials characterization, spectroscopy, etc. This has resulted in massive strides in the development of essential system components such as broadband terahertz sources, detector arrays with high responsivity, as well as modulators. In parallel to this, spurred by the isolation of graphene in 2004, a tremendous interest in 2D systems has led to the rapid exploration and development of a library of atomically thin materials. These can exhibit a myriad of electrical and optical functionalities stemming from semiconducting, insulating, semi-metallic, or superconducting behavior. In this context, since the early 2010s, 2D materials have been actively explored for active control of terahertz electromagnetic radiation. This paper aims to provide a concise overview of the pioneering efforts as well as the latest progress in these two overlapping research areas. In particular, the discussion is focused on the application of graphene and transition metal dichalcogenides in optically and electrically actuated terahertz amplitude and phase modulators. Furthermore, it provides an outlook on the technological prospects and challenges in these devices.
机译:由于各种潜在的应用,例如短距离高速数据传输,无创性筛选和检测,材料表征,光谱学等,跨越电磁频谱的太赫兹波在0.1至10 THz区域引起了广泛的关注。在重要系统组件(例如宽带太赫兹源,高响应性检测器阵列以及调制器)的开发方面取得了长足的进步。与此同时,在2004年隔离石墨烯的刺激下,人们对2D系统产生了极大的兴趣,导致对原子薄材料库的快速探索和开发。这些可以表现出源自半导体,绝缘,半金属或超导行为的多种电和光学功能。在此背景下,自2010年代初以来,一直积极探索2D材料以主动控制太赫兹电磁辐射。本文旨在简要概述这两个重叠研究领域中的开拓性工作以及最新进展。尤其是,讨论的重点是石墨烯和过渡金属二卤化物在光和电驱动的太赫兹幅度和相位调制器中的应用。此外,它提供了对这些设备的技术前景和挑战的展望。

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