论文标题

超导体的电流光电导率

Current-enabled optical conductivity of superconductors

论文作者

Papaj, Michał, Moore, Joel E.

论文摘要

在大多数超导体中,光激发需要杂质散射或多个带的存在。这是因为在干净的单频段超导体中,粒子孔和反转对称性的组合可以阻止持有动量的过渡。在这项工作中,我们展示了超电流的流程如何导致对光导率的新贡献。随着超电流的断裂反转对称性,即使在干净的超导体中,超导间隙的过渡也被允许,并在杂质诱导的贡献中占主导地位,以使能量与间隙宽度相当。响应取决于基本正常状态的性质以及超导顺序的类型。通过使用外部磁场引起的可控幅度和方向的筛选超电流,这可以详细研究超导状态,并在非常规的超导体中确定其他技术是无法可行的。

In most superconductors, optical excitations require impurity scattering or the presence of multiple bands. This is because in clean single-band superconductors, the combination of particle-hole and inversion symmetries prevents momentum-conserving transitions. In this work we show how the flow of supercurrent can lead to new contributions to optical conductivity. As supercurrent breaks inversion symmetry, transitions across the superconducting gap become allowed even in clean superconductors and dominate over impurity-induced contributions for energies comparable to the gap width. The response is dependent on the nature of the underlying normal state as well as on the type of superconducting order. Through use of the screening supercurrent with controllable magnitude and direction, that arises from an external magnetic field, this enables a detailed investigation of the superconducting state and possible gap symmetry determination in unconventional superconductors for which other techniques have not been practicable.

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