首页> 外文会议>International Conference on Infrared, Millimeter, and Terahertz Waves;IRMMW-THz 2012 >Terahertz radiation induced photocurrents in graphene subjected to an in-plane magnetic field
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Terahertz radiation induced photocurrents in graphene subjected to an in-plane magnetic field

机译:太赫兹辐射在平面内磁场作用下在石墨烯中诱导的光电流

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We report on the observation of terahertz radiation induced photocurrents in single-layer graphene samples subjected to an in-plane magnetic field. The photosignal is observed for both, linearly and circularly polarized radiation. A remarkable effect is that the current inverts its sign not only by switching the magnetic field direction, but as well by changing the radiation helicity from left- to right-handedness. We demonstrate that the photocurrent stems from strong structure inversion asymmetry (SIA) of samples originating from the presence of substrate and/or adatoms on graphene. The analysis shows that the observed effect represents a new type of ratchet effects: magnetic field induced ratchets. A microscopic theory of the observed effect is developed being in a good qualitative agreement with the experiment. Furthermore, the experiments open a promising access to the investigation of SIA which is of particular interest for the understanding of graphene properties as well as applications.
机译:我们报告了受到平面内磁场作用的单层石墨烯样品中太赫兹辐射诱导的光电流的观察结果。对于线性和圆偏振辐射,均观察到光晕。一个显着的效果是,电流不仅通过切换磁场方向来反转其符号,而且还可以通过将辐射螺旋度从左旋变为右旋来反转其符号。我们证明光电流源于样品的强结构反转不对称性(SIA),该样品源自石墨烯上底物和/或吸附原子的存在。分析表明,观察到的作用代表了一种新型的棘轮效应:磁场感应的棘轮。建立了观察到的效果的微观理论,与实验具有很好的定性一致性。此外,该实验为研究SIA开辟了一个有希望的途径,这对于理解石墨烯特性及其应用特别有意义。

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