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Intrinsic photo-conductance triggered by the plasmonic effect in graphene for terahertz detection

机译:太赫兹检测中石墨烯中的等离激元效应触发的本征光电导

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摘要

Terahertz (THz) technology is becoming more eminent for applications in diverse areas including biomedical imaging, communication, security and astronomy. However, THz detection still has some challenges due to the lack of sources and detectors despite decades of considerable effort. The appearance of graphene and its gapless spectrum enable their applications in sensitive detection of light over a very wide energy spectrum from ultraviolet, infrared to terahertz. Several mechanisms in graphene for THz detection have been proposed, such as photo-thermoelectric, Dyakonov-Shur (DS) and bolometric effects. Here, we propose a photoconductive mechanism assisted by plasma wave in a graphene field-effect transistor (FET). Sensitive response to THz radiation can be realized far below the interband transition at room temperature. The response is due to the contributions of both plasma drag and convection effects. The two effects can both trigger multiple potential wells along the channel, which are different from other quantum-transition mechanisms. The photoconductive effects can be explored in both periodic and non-periodic systems and can be substantially enhanced under the electric field. They could reduce the burden of structural complexity compared to other mechanisms like unilateral thermoelectric and DS detection. This paves the way for. more judicious photo-detector design for versatile THz applications.
机译:太赫兹(THz)技术在生物医学成像,通信,安全和天文学等各个领域的应用中正变得越来越重要。然而,尽管数十年来付出了巨大的努力,但由于缺乏信号源和检测器,太赫兹检测仍面临一些挑战。石墨烯的出现及其无间隙的光谱使其能够用于从紫外,红外到太赫兹的非常宽的能量谱中对光的灵敏检测。已经提出了石墨烯中用于太赫兹检测的几种机制,例如光热电,Dyakonov-Shur(DS)和辐射热效应。在这里,我们提出一种在石墨烯场效应晶体管(FET)中由等离子体波辅助的光电导机制。在室温下,可以实现远低于带间跃迁的对THz辐射的敏感响应。该响应归因于等离子体阻力和对流效应。这两种效应都可以沿通道触发多个势阱,这与其他量子跃迁机制不同。可以在周期性和非周期性系统中探索光电导效应,并且在电场下可以显着增强光电导效应。与单边热电和DS检测等其他机制相比,它们可以减轻结构复杂性的负担。这为实现铺平了道路。更明智的光电探测器设计,适用于多种太赫兹应用。

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