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半金属——石墨产生太赫兹波的机制与调制

Mechanism and modulation of terahertz generation from a semimetal--graphite.

作者信息

Ye Tong, Meng Sheng, Zhang Jin, E Yiwen, Yang Yuping, Liu Wuming, Yin Yan, Wang Li

机构信息

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190.

School of Science, Minzu University of China, Beijing, 100081.

出版信息

Sci Rep. 2016 Mar 14;6:22798. doi: 10.1038/srep22798.

Abstract

Semi-metals might offer a stronger interaction and a better confinement for terahertz wave than semiconductors, while preserve tunability. Particularly, graphene-based materials are envisioned as terahertz modulators, filters and ultra-broadband sources. However, the understanding of terahertz generation from those materials is still not clear, thus limits us recognizing the potential and improving device performances. Graphite, the mother material of graphene and a typical bulk semi-metal, is a good system to study semi-metals and graphene-based materials. Here we experimentally modulate and maximize the terahertz signal from graphite surface, thus reveal the mechanism--surface field driving photon induced carriers into transient current to radiate terahertz wave. We also discuss the differences between graphite and semiconductors; particularly graphite shows very weak temperature dependency from room temperature to 80 °C. Above knowledge will help us understand terahertz generations, achieve maximum output and electric modulation, in semi-metal or graphene based devices.

摘要

与半导体相比,半金属可能对太赫兹波提供更强的相互作用和更好的限制,同时保持可调谐性。特别是,基于石墨烯的材料被设想为太赫兹调制器、滤波器和超宽带源。然而,对这些材料产生太赫兹的理解仍然不清楚,因此限制了我们认识其潜力和提高器件性能。石墨是石墨烯的母体材料和典型的块状半金属,是研究半金属和基于石墨烯的材料的良好体系。在这里,我们通过实验调制并最大化来自石墨表面的太赫兹信号,从而揭示其机制——表面场驱动光子诱导载流子形成瞬态电流以辐射太赫兹波。我们还讨论了石墨与半导体之间的差异;特别是石墨在室温至80°C范围内表现出非常弱的温度依赖性。上述知识将有助于我们理解基于半金属或石墨烯的器件中的太赫兹产生,实现最大输出和电调制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d02/4789595/043ce73a5fb7/srep22798-f1.jpg

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