非中心对称超导体La7Ni3的时间反转对称性破缺和多隙超导性

Arushi, Deepak Singh, A. Hillier, M. Scheurer, Ravi P. Singh
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引用次数: 4

摘要

Th$ {7}$Fe${3}$超导体家族为非常规超导提供了丰富的平台。La$_7$Ni$_3$是这个家族的最新成员,我们在这里通过热力学和介子自旋和弛豫测量来研究它。我们的比热数据提供了两个不同的和近似各向同性超导间隙的证据。较大的差距值略高于弱耦合BCS理论,表明存在显著的相关性。这些观测结果被横向场的介子旋转测量所证实。此外,零场测量揭示了超导状态下的小内部场,这些场发生在接近超导开始的地方,表明超导序参量打破了时间反转对称性。我们讨论了两种可能的微观场景——非常规的$E_{2}(1,i)$状态和$s+i\,s$超导体,这是由两个连续的转变达到的——并说明了哪些相互作用将有利于这些相。我们的结果表明La$ {7}$Ni$ ${3}$是Th$ {7}$Fe$ ${3}$族的第一成员,同时具有时间逆对称性破缺和多间隙超导性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time-reversal symmetry breaking and multigap superconductivity in the noncentrosymmetric superconductor La7Ni3
The Th$_{7}$Fe$_{3}$ family of superconductors provides a rich playground for unconventional superconductivity. La$_7$Ni$_3$ is the latest member of this family, which we here investigate by means of thermodynamic and muon spin rotation and relaxation measurements. Our specific heat data provides evidence for two distinct and approximately isotropic superconducting gaps. The larger gap has a value slightly higher than that of weak-coupling BCS theory, indicating the presence of significant correlations. These observations are confirmed by transverse-field muon-rotation measurements. Furthermore, zero-field measurements reveal small internal fields in the superconducting state, which occur close to the onset of superconductivity and indicate that the superconducting order parameter breaks time-reversal symmetry. We discuss two possible microscopic scenarios -- an unconventional $E_{2}(1,i)$ state and an $s+i\,s$ superconductor, which is reached by two consecutive transitions -- and illustrate which interactions will favor these phases. Our results establish La$_{7}$Ni$_{3}$ as the first member of the Th$_{7}$Fe$_{3}$ family displaying both time-reversal-symmetry-breaking and multigap superconductivity.
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