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首页> 外文期刊>American Family Physician >Aharonov-Bohm oscillations of four-probe resistance in topological quantum rings in silicene and bilayer graphene
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Aharonov-Bohm oscillations of four-probe resistance in topological quantum rings in silicene and bilayer graphene

机译:硅胶和双层石墨烯拓扑量子环中四探测电阻的AHARONOV-BOHM振荡

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摘要

We consider observation of Aharonov-Bohm oscillations in clean systems based on the flow of topologically protected currents in silicene and bilayer graphene. The chiral channels in these materials are defined by the flips of the vertical electric field. The line of the flip confines chiral currents flowing along it in the direction determined by the valley. We present an electric field profile that forms a crossed ring to which four terminals can be attached, and find that the conductance matrix elements oscillate in the perpendicular magnetic field in spite of the absence of backscattering. We propose a four-probe resistance measurement setup, and demonstrate that the resistance oscillations have large visibility provided that the system is prepared in such a way that a direct transfer of the chiral carriers between the current probes is forbidden.
机译:我们考虑基于晶体和双层石墨烯的拓扑保护电流流动的清洁系统中的Aharonov-BoHM振荡观察。 这些材料中的手性通道由垂直电场的翻盖限定。 折扣线限制了沿着山谷确定的方向流动的手性电流。 我们介绍了一种电磁场轮廓,其形成交叉的环,其可以附接到四个端子,并且尽管没有反向散射,但是在垂直磁场中振荡导电矩阵元件。 我们提出了一种四探测电阻测量设置,并证明了电阻振荡具有很大的可视性,规定是以这样的方式制备该系统,使得禁止在电流探针之间的手性载体的直接转移。

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