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首页> 外文期刊>The European physical journal: Special topics >Current characteristics of mesoscopic rings in quantum Smoluchowski regime
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Current characteristics of mesoscopic rings in quantum Smoluchowski regime

机译:Smoluchowski量子态介观环的电流特性

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摘要

In normal mesoscopic metals of a ring topology persistent currents can be induced by threading the center of the ring with a magnetic flux. This phenomenon is an example of the famous Aharonov-Bohm effect. In the paper we study the current vs the external constant magnetic flux characteristics of the system driven by both the classical and the quantum thermal fluctuations. The problem is formulated in terms of Langevin equations in classical and quantum Smoluchowski regimes. We analyze the impact of the quantum thermal fluctuations on the current-flux characteristics. We demonstrate that the current response can be changed from paramagnetic to diamagnetic when the quantum nature of the thermal fluctuations increases.
机译:在环形拓扑的常规介观金属中,可以通过在磁环上穿通磁通量来感应持续电流。这种现象就是著名的阿哈罗诺夫-鲍姆效应的一个例子。在本文中,我们研究了由经典和量子热涨落驱动的系统电流与外部恒定磁通量的关系。该问题是根据经典和量子Smoluchowski体制中的Langevin方程提出的。我们分析了量子热涨落对电流通量特性的影响。我们证明,当热涨落的量子性质增加时,电流响应可以从顺磁性变为反磁性。

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