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库珀对绝缘体中的非平衡二阶相变。

Nonequilibrium Second-Order Phase Transition in a Cooper-Pair Insulator.

作者信息

Doron A, Tamir I, Mitra S, Zeltzer G, Ovadia M, Shahar D

机构信息

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

出版信息

Phys Rev Lett. 2016 Feb 5;116(5):057001. doi: 10.1103/PhysRevLett.116.057001. Epub 2016 Feb 2.

Abstract

In certain disordered superconductors, upon increasing the magnetic field, superconductivity terminates with a direct transition into an insulating phase. This phase is comprised of localized Cooper pairs and is termed a Cooper-pair insulator. The current-voltage characteristics measured in this insulating phase are highly nonlinear and, at low temperatures, exhibit abrupt current jumps. Increasing the temperature diminishes the jumps until the current-voltage characteristics become continuous. We show that a direct correspondence exists between our system and systems that undergo an equilibrium, second-order, phase transition. We illustrate this correspondence by comparing our results to the van der Waals equation of state for the liquid-gas mixture. We use the similarities to identify a critical point where an out of equilibrium second-order-like phase transition occurs in our system. Approaching the critical point, we find a power-law behavior with critical exponents that characterizes the transition.

摘要

在某些无序超导体中,随着磁场增强,超导性会通过直接转变为绝缘相而终止。这个相由局域化的库珀对组成,被称为库珀对绝缘体。在这个绝缘相中测量的电流 - 电压特性是高度非线性的,并且在低温下会出现突然的电流跳跃。温度升高会减小这些跳跃,直到电流 - 电压特性变得连续。我们表明,我们的系统与经历平衡二阶相变的系统之间存在直接对应关系。我们通过将我们的结果与液 - 气混合物的范德瓦尔斯状态方程进行比较来说明这种对应关系。我们利用这些相似性来确定一个临界点,在我们的系统中会发生非平衡类二阶相变。接近临界点时,我们发现具有表征该转变的临界指数的幂律行为。

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