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首页> 外文期刊>Physical review letters >Quantum-Fluctuation Effects in the Transport Properties of Ultrathin Films of Disordered Superconductors above the Paramagnetic Limit
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Quantum-Fluctuation Effects in the Transport Properties of Ultrathin Films of Disordered Superconductors above the Paramagnetic Limit

机译:顺磁极限以上无序超导体超薄膜传输特性的量子波动效应

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摘要

We study the transport in ultrathin disordered film near the quantum critical point induced by the Zeeman field. We calculate corrections to the normal state conductivity due to quantum pairing fluctuations. The fluctuation-induced transport is mediated by virtual rather than real quasiparticle excitations. We find that at zero temperature, where the corrections come from purely quantum fluctuations, the Aslamazov-Larkin paraconductivity term, the Maki-Thompson interference contribution, and the density of states effects are all of the same order. The total correction leads to the negative magnetoresistance. This result is in qualitative agreement with the recent transport observations in the parallel magnetic field of the homogeneously disordered amorphous films and superconducting two-dimensional electron gas realized at the oxide interfaces.
机译:我们研究了由塞曼场引起的量子临界点附近的超薄无序薄膜中的传输。我们计算由于量子配对波动对正常态电导率的校正。波动引起的传输是通过虚拟而不是真实的准粒子激发来介导的。我们发现在零温度下,校正来自纯粹的量子涨落,Aslamazov-Larkin准导电性项,Maki-Thompson干扰贡献以及状态密度效应都处于同一阶数。总校正导致负磁阻。该结果与在均匀无序的非晶膜和在氧化物界面处实现的超导二维电子气的平行磁场中的最新输运观察在质量上是一致的。

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