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复杂量子材料中的非单一超导性。

Nonunitary superconductivity in complex quantum materials.

作者信息

Ramires Aline

机构信息

Paul Scherrer Institute, CH-5232 Villigen PSI, Switzerland.

出版信息

J Phys Condens Matter. 2022 Jun 1;34(30). doi: 10.1088/1361-648X/ac6d3a.

Abstract

We revisit the concept of nonunitary superconductivity and generalize it to address complex quantum materials. Starting with a brief review of the notion of nonunitary superconductivity, we discuss its spectral signatures in simple models with only the spin as an internal degree of freedom. In complex materials with multiple internal degrees of freedom, there are many more possibilities for the development of nonunitary order parameters. We provide examples focusing on d-electron systems with two orbitals, applicable to a variety of materials. We discuss the consequences for the superconducting spectra, highlighting that gap openings of band crossings at finite energies can be attributed to a nonunitary order parameter if this is associated with a finite superconducting fitness matrix. We speculate that nonunitary superconductivity in complex quantum materials is in fact very common and can be associated with multiple cases of recently reported time-reversal symmetry breaking superconductors.

摘要

我们重新审视非幺正超导的概念,并将其推广以适用于复杂量子材料。首先简要回顾非幺正超导的概念,我们在仅以自旋作为内部自由度的简单模型中讨论其光谱特征。在具有多个内部自由度的复杂材料中,非幺正序参量的发展有更多可能性。我们给出以具有两个轨道的d电子系统为重点的例子,这些例子适用于多种材料。我们讨论超导光谱的相关结果,强调如果有限能量处的能带交叉能隙打开与有限的超导适配矩阵相关,那么它可归因于非幺正序参量。我们推测复杂量子材料中的非幺正超导实际上非常普遍,并且可能与最近报道的多个时间反演对称性破缺超导的例子有关。

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