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首页> 外文期刊>Physical review letters >Fluctuation Conductivity of Thin Films and Nanowires Near a Parallel-Field-Tuned Superconducting Quantum Phase Transition
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Fluctuation Conductivity of Thin Films and Nanowires Near a Parallel-Field-Tuned Superconducting Quantum Phase Transition

机译:平行场调谐的超导量子相变附近的薄膜和纳米线的波动电导率

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摘要

We calculate the fluctuation correction to the normal state conductivity in the vicinity of a quantum phase transition from a superconducting to a normal state, induced by applying a magnetic field parallel to a dirty thin film or a nanowire with thickness smaller than the superconducting coherence length. We find that at zero temperature, where the correction comes purely from quantum fluctuations, the positive "Aslamazov-Larkin" contribution, the negative "density of states" contribution, and the "Maki-Thompson" interference contribution are all of the same order and the total correction is negative. Further, we show that, based on how the quantum critical point is approached, there are three regimes that show different temperature and field dependencies which should be experimentally accessible.
机译:我们计算从超导到常态的量子相变附近对常态电导率的波动校正,该变化是通过施加平行于脏薄膜或厚度小于超导相干长度的纳米线的磁场而引起的。我们发现,在零温度下,校正完全来自量子涨落,正的“ Aslamazov-Larkin”贡献,负的“状态密度”贡献和“ Maki-Thompson”干涉贡献都相同,并且总校正为负。此外,我们表明,根据接近量子临界点的方式,存在三种显示不同温度和场依赖性的机制,这些机制应该可以通过实验获得。

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