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Superconductor-insulator quantum phase transition in a single Josephson junction - art. no. 104516

机译:单约瑟夫逊结中的超导体-绝缘体量子相变-艺术。没有。 104516

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摘要

The superconductor-to-insulator quantum phase transition in resistively shunted Josephson junctions is investigated by means of path-integral Monte Carlo simulations. Our numerical technique allows to directly access the regime of the Josephson-to-charging energy ratios E-J/E-C of order one. Our results unambiguously support an earlier theoretical conjecture, based on renormalization-group calculations, that at T-->0 the dissipative phase transition occurs at a universal value of the shunt resistance R-S=h/4e(2) for all values E-J/E-C. On the other hand, finite-temperature effects are shown to turn this phase transition into a crossover, whose position depends significantly on E-J/E-C, as well as on the dissipation strength and temperature. The latter effect needs to be taken into account in order to reconcile earlier theoretical predictions with recent experimental results. [References: 28]
机译:通过路径积分蒙特卡罗模拟研究了电阻分流的约瑟夫森结中超导体到绝缘体的量子相变。我们的数值技术允许直接访问一级约瑟夫森与充电能量比E-J / E-C的范围。我们的结果明确地支持基于重归一化组计算的早期理论推测,即在T-> 0时,对于所有值EJ / EC,耗散相变发生在分流电阻RS = h / 4e(2)的通用值处。另一方面,有限温度效应显示出将这种相变转变为分频器,其位置在很大程度上取决于E-J / E-C以及耗散强度和温度。为了使早期的理论预测与最近的实验结果相一致,需要考虑到后者的影响。 [参考:28]

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