论文标题

非磁性nb/ru/sr $ _2 $ ruo $ _4 $拓扑结合的自发超导二极管效应

Spontaneous superconducting diode effect in non-magnetic Nb/Ru/Sr$_2$RuO$_4$ topological junctions

论文作者

Anwar, M. S., Nakamura, T., Ishiguro, R., Arif, S., Robinson, J. W. A., Yonezawa, S., Sigrist, M., Maeno, Y.

论文摘要

如果时间逆转和反转对称性损坏,则在材料中的非转录电子传输发生。超导二极管效应(SDE)是这种行为的异国情调表现,在这种行为中,正对正和负电流的临界电流不匹配,正如最近在一些具有磁场的非中心对称超导体中观察到的那样。在这里,我们演示了非磁性NB/RU/SR $ _2 $ ruo $ _4 $ Josephson交界处的SDE,而无需应用外部磁场。 SDE的冷却历史依赖性表明,SR $ _2 $ ruo $ _4 $的超导阶段本质上打破了时间反转对称性。应用的磁场通过随机更改非重生的符号动态修改SDE。我们为这种拓扑结的模型提出了一个模型,该模型与传统的超导体被手性超导体所包围,并带有破裂的时间逆转对称性。

Non-reciprocal electronic transport in a material occurs if both time reversal and inversion symmetries are broken. The superconducting diode effect (SDE) is an exotic manifestation of this type of behavior where the critical current for positive and negative currents are mismatched, as recently observed in some non-centrosymmetric superconductors with a magnetic field. Here, we demonstrate a SDE in non-magnetic Nb/Ru/Sr$_2$RuO$_4$ Josephson junctions without applying an external magnetic field. The cooling history dependence of the SDE suggests that time-reversal symmetry is intrinsically broken by the superconducting phase of Sr$_2$RuO$_4$. Applied magnetic fields modify the SDE dynamically by randomly changing the sign of the non-reciprocity. We propose a model for such a topological junction with a conventional superconductor surrounded by a chiral superconductor with broken time reversal symmetry.

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