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Fabry–Pérot resonances and a crossover to the quantum Hall regime in ballistic graphene quantum point contacts

机译:弹道石墨烯量子点接触中的法布里-珀罗共振和量子霍尔态的交叉

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摘要

We report on the observation of quantum transport and interference in a graphene device that is attached with a pair of split gates to form an electrostatically-defined quantum point contact (QPC). In the low magnetic field regime, the resistance exhibited Fabry–Pérot (FP) resonances due to np’n(pn’p) cavities formed by the top gate. In the quantum Hall (QH) regime with a high magnetic field, the edge states governed the phenomena, presenting a unique condition where the edge channels of electrons and holes along a p–n junction acted as a solid-state analogue of a monochromatic light beam. We observed a crossover from the FP to QH regimes in ballistic graphene QPC under a magnetic field with varying temperatures. In particular, the collapse of the QH effect was elucidated as the magnetic field was decreased. Our high-mobility graphene device enabled observation of such quantum coherence effects up to several tens of kelvins. The presented device could serve as one of the key elements in future electronic quantum optic devices.
机译:我们报告了石墨烯器件中的量子传输和干扰的观察结果,该器件与一对分裂栅相连以形成静电定义的量子点触点(QPC)。在低磁场条件下,由于顶栅形成的np’n(pn’p)腔,电阻表现出法布里-珀罗(FP)共振。在具有高磁场的量子霍尔(QH)态中,边缘状态控制着现象,呈现出独特的条件,其中沿ap-n结的电子和空穴的边缘通道充当单色光束的固态类似物。我们观察到在温度变化的磁场下,在弹道石墨烯QPC中从FP到QH的交叉。尤其是,随着磁场的减小,QH效应的崩溃得以阐明。我们的高迁移率石墨烯设备能够观察到多达数十开尔文的量子相干效应。提出的装置可以用作未来电子量子光学装置的关键要素之一。

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