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首页> 外文期刊>Journal of the Physical Society of Japan >Impurity Effects in Nodal Extended s- and Nodeless d-Wave Superconductors: Gap Symmetry of BiS2-Based Layered Superconductors
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Impurity Effects in Nodal Extended s- and Nodeless d-Wave Superconductors: Gap Symmetry of BiS2-Based Layered Superconductors

机译:节点延伸的S-和无点D波超导体中的杂质效应:基于BIS2的层叠层的间隙对称性

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摘要

In BiS2-based layered superconductors, the existence of gap nodes on Fermi-surface curves has been suggested from angle-resolved photoemission spectroscopy measurements, whereas the conventional s-wave gap has been proposed from measurements of superfluid density and thermal conductivity. To reconcile these two distinct experimental results of the gap node, we investigate nonmagnetic impurity effects in the superconductor with a disconnected pocketlike Fermi-surface structure. Then, we claim that the seemingly contradictory situation concerning the gap node is resolved by a concept of dirty nodal extended s-wave superconductivity. Provided that it is unnecessary to consider the nodes of the gap, at first glance, the conventional s-wave gap seems to be a unique solution, but in the pocketlike Fermi-surface topology, a nontrivial possibility of a nodeless d-wave superconductor is pointed out. To clarify the gap symmetry, we propose to perform experiments on nuclear magnetic relaxation rate T-1(-1) in BiS2-based layered superconductors.
机译:在基于BIS2的层叠超导体中,已经提出了来自角度分辨的光曝光光谱测量的费米表面曲线上的间隙节点,而传统的S波间隙已经从超流密度和导热率的测量提出。为了调和间隙节点的这两个不同的实验结果,我们研究了超导体的非磁性杂质效应,具有断开的袋状FERMI-表面结构。然后,我们声称,通过肮脏的节点扩展S波超导性的概念来解决差距节点的看似矛盾的情况。如果不需要考虑间隙的节点,首先透明,传统的S波间隙似乎是一种独特的解决方案,而是在袋般的Fermi-Surface拓扑中,无点D波超导体的非竞争可能性是指出。为了阐明间隙对称性,我们建议在BIS2基层超导体中对核磁弛豫速率T-1(-1)进行实验。

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