论文标题

有限能源和有限摩托车超导配对的相互作用

Interplay of finite-energy and finite-momentum superconducting pairing

论文作者

Chakraborty, Debmalya, Black-Schaffer, Annica M.

论文摘要

了解库珀对的性质对于描述超导体的特性至关重要。 Bardeen,Cooper和Schrieffer(BCS)的原始提议是基于电子配对的电子和零质量中心动量的。随着新超导体的出现,已经讨论了不同形式的配对。特别是,与有限的质量中心动力的库珀对受到了巨大的兴趣。除了这种有限的摩托对配对外,不同能量的电子配对也是理解某些超导体的核心。在这里,我们研究了有限摩托车和有限能源库珀对的相互作用,考虑了两个不同的系统:在没有相关的超级管制的磁场的情况下,在没有磁场的情况下,在应用磁场下的常规$ s $ - 波超导体和一个$ d $ - 波 - 波的有限摩托车配对状态。在研究这两个系统时,我们发现有限能源对持续存在独立于有限摩托的配对,并且它们导致奇怪的频率超导相关性。我们通过表明大多数频率的零能对驱动的偶数相关性主要是由零能对驱动的。我们进一步计算了Meissner效应,并发现奇数相关性对于正确描述Meissner效应至关重要。

Understanding the nature of Cooper pairs is essential to describe the properties of superconductors. The original proposal of Bardeen, Cooper, and Schrieffer (BCS) was based on electrons pairing with same energy and zero center-of-mass momentum. With the advent of new superconductors, different forms of pairing have been discussed. In particular, Cooper pairs with finite center-of-mass momentum have received large interest. Along with such finite-momentum pairs, pairing of electrons at different energies is also central to understanding some superconductors. Here, we investigate the interplay of finite-momentum and finite-energy Cooper pairs considering two different systems: a conventional $s$-wave superconductor under applied magnetic field and a $d$-wave finite-momentum pairing state in the absence of magnetic field relevant to correlated superconductors. Investigating both these systems, we find finite-energy pairs persisting independently of finite-momentum pairing, and that they lead to odd-frequency superconducting correlations. We contrast this finding by showing that the even-frequency correlations are predominantly driven by zero-energy pairs for most frequencies. We further calculate the Meissner effect and find that odd-frequency correlations are essential for correctly describing the Meissner effect.

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