Weyl半金属的拓扑与常规超导:微观方法

IF 5.6 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Enrique Muñoz , Juan Esparza , José Braun , Rodrigo Soto-Garrido
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引用次数: 0

摘要

从Weyl半金属中粒子-粒子相互作用的微观模型出发,我们分析了在相同(节点内)或相反(节点间)Weyl节点的准粒子激发之间的常规和单极子库珀配对的可能性。我们推导了一个自洽类bcs方程的耦合系统,其中对的角依赖性直接由微观相互作用对称性决定。我们研究了常规和单极超导相之间的竞争,从而从微观相互作用模型参数中得到了明确的相图。我们确定了两相的临界温度,以及低温临界行为,包括比热,我们建议作为Weyl半金属拓扑量子临界的可能实验探针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Topological versus conventional superconductivity in a Weyl semimetal: A microscopic approach
Starting from a microscopic model for the particle–particle interactions in a Weyl semimetal, we analyzed the possibility for conventional as well as monopole Cooper pairing between quasiparticle excitations at the same (intra-nodal) or opposite (inter-nodal) Weyl nodes. We derived a coupled system of self-consistent BCS-like equations, where the angular dependence of the pairings is directly determined from the microscopic interaction symmetries. We studied the competition between conventional and monopole superconducting phases, thus obtaining explicitly the phase diagrams from the microscopic interaction model parameters. We determined the critical temperatures for both phases, and the low temperature critical behavior, including the specific heat, that we suggest as possible experimental probe for topological quantum criticality in Weyl semimetals.
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CiteScore
3.90
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