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正常金属环中的持续电流。

Persistent currents in normal metal rings.

作者信息

Bluhm Hendrik, Koshnick Nicholas C, Bert Julie A, Huber Martin E, Moler Kathryn A

机构信息

Departments of Physics and Applied Physics, Stanford University, Stanford, California 94305, USA.

出版信息

Phys Rev Lett. 2009 Apr 3;102(13):136802. doi: 10.1103/PhysRevLett.102.136802. Epub 2009 Mar 30.

Abstract

The authors have measured the magnetic response of 33 individual cold mesoscopic gold rings, one ring at a time. The response of some sufficiently small rings has a component that is periodic in the flux through the ring and is attributed to a persistent current. Its period is close to h/e, and its sign and amplitude vary between rings. The amplitude distribution agrees well with predictions for the typical h/e current in diffusive rings. The temperature dependence of the amplitude, measured for four rings, is also consistent with theory. These results disagree with previous measurements of three individual metal rings that showed a much larger periodic response than expected. The use of a scanning SQUID microscope enabled in situ measurements of the sensor background. A paramagnetic linear susceptibility and a poorly understood anomaly around a zero field are attributed to defect spins.

摘要

作者们一次测量一个,对33个单独的冷介观金环的磁响应进行了测量。一些足够小的环的响应具有一个在通过环的磁通量中呈周期性的分量,这归因于持续电流。其周期接近h/e,其符号和幅度在不同环之间变化。幅度分布与扩散环中典型h/e电流的预测结果吻合得很好。对四个环测量的幅度的温度依赖性也与理论一致。这些结果与之前对三个单独金属环的测量结果不同,之前的测量显示出比预期大得多的周期性响应。使用扫描超导量子干涉仪显微镜能够对传感器背景进行原位测量。顺磁线性磁化率以及零场附近一个尚不清楚的异常现象被归因于缺陷自旋。

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