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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Masking effect of heat dissipation on the current-voltage characteristics of a mesoscopic superconducting sample with leads
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Masking effect of heat dissipation on the current-voltage characteristics of a mesoscopic superconducting sample with leads

机译:散热的屏蔽对带引线的介观超导样品的电流-电压特性的影响

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摘要

A theoretical analysis based on a numerical solution of the coupled time-dependent Ginzburg-Landau and heat dissipation equations shows a strong dependence of the critical currents on the applied magnetic field in a mesoscopic square with attached contacts. In agreement with experiment we found hysteresis which are caused by a strong heat dissipation in the sample at currents close to the depairing Ginzburg-Landau current and/or the dynamics of the superconducting condensate. The theoretically obtained nonmonotonous dependence of the switching current (from superconducting to the resistive state) on the applied magnetic field, arising from the changes in the vorticity, agrees quantitatively with the experimental data. Our results show that heat dissipation leads to an increase of the hysteresis in the current-voltage characteristic and hence masks the actual dynamics of the superconducting condensate.
机译:基于耦合时间相关的Ginzburg-Landau方程和散热方程的数值解的理论分析表明,在具有接触点的介观正方形中,临界电流对施加磁场的强烈依赖性。与实验相符,我们发现了磁滞现象,这是由于在接近解对的Ginzburg-Landau电流的电流和/或超导冷凝物的动力学条件下,样品中的强烈散热引起的。从理论上获得的,由涡度变化引起的开关电流(从超导状态到电阻状态)对施加磁场的非单调依赖性,在数量上与实验数据一致。我们的结果表明,散热导致电流-电压特性中的磁滞增加,从而掩盖了超导冷凝物的实际动态。

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