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短导线中的尖锐超导-绝缘体转变

Sharp superconductor-insulator transition in short wires.

作者信息

Meidan Dganit, Oreg Yuval, Refael Gil

机构信息

Department of Condensed Matter Physics, Weizmann Institute of Science, Rehovot, 76100, Israel.

出版信息

Phys Rev Lett. 2007 May 4;98(18):187001. doi: 10.1103/PhysRevLett.98.187001. Epub 2007 May 1.

Abstract

Recent experiments on short MoGe nanowires show a sharp superconducting-insulating transition at the universal resistance R(Q)=h/(4e(2)), contrary to the expectation of a smooth temperature dependence of the resistance for such Josephson-like systems. We present a self-consistent renormalization-group treatment of interacting quantum phase slips in short superconducting wires, which reproduces this sharp universal transition. Our method should also apply to other systems in the sine-Gordon universality class, in the previously inaccessible intermediate-coupling regime.

摘要

最近对短MoGe纳米线进行的实验表明,在通用电阻R(Q)=h/(4e(2))处出现了尖锐的超导-绝缘转变,这与这类约瑟夫森型系统电阻随温度平滑变化的预期相反。我们提出了一种对短超导线中相互作用的量子相位滑移进行自洽重整化群处理的方法,该方法再现了这种尖锐的通用转变。我们的方法也应该适用于正弦-戈登普适类中的其他系统,处于之前难以达到的中间耦合区域。

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