论文标题

二维列列超导体中的热传输

Thermal Transport in 2D Nematic Superconductors

论文作者

Choudhury, Sourav Sen, Peterson, Sean, Idzerda, Yves

论文摘要

我们研究具有共存超导(SC)和列表的二维系统中的热传输。我们在紧密结合的平方晶格中分析了共存阶段的性质,在该晶格中,列表被模拟为$ d $ - 波pomeranchuk型型不稳定性,以及SC上的对称性破坏列表的反馈通过混合$ S $,$ D $ D $ PARING互动来解释SC订单。电子热导率是在玻尔兹曼动力学理论框架内计算的,在玻尔兹曼动力学理论的框架内,杂质散射碰撞均在出生和单一限制中均被处理。我们提出了定性,分析和数值结果,这些结果表明,从列明背景出现的SC状态的热传输性能是完全不同的,并且取决于nematicity引起的SC间隙的各向异性程度。我们描述了Fermi表面拓扑,Van Hove的奇异性以及共存阶段中的零能激励的存在对导热率的低温行为的影响。我们的主要结论是,列表和SC订单的相互作用具有可见的热传输中的特征,可在共存阶段推断SC间隙结构。

We study the thermal transport in a two-dimensional system with coexisting superconducting (SC) and nematic orders. We analyze the nature of the coexistence phase in a tight-binding square lattice where the nematic state is modelled as a $d$-wave Pomeranchuk type instability and the feedback of the symmetry breaking nematic state on the SC order is accounted for by mixing of the $s$, $d$ paring interaction. The electronic thermal conductivity is computed within the framework of Boltzmann kinetic theory where the impurity scattering collision is treated in the both the Born and Unitary limits. We present qualitative, analytical, and numerical results that show that the heat transport properties of SC states emerging from a nematic background are quite distinct and depend on the degree of anisotropy of the SC gap induced by nematicity. We describe the influence of the Fermi surface topology, the van Hove singularities, and the presence or absence of zero energy excitations in the coexistence phase on the the low temperature behaviour of the thermal conductivity. Our main conclusion is that the interplay of nematic and SC orders has visible signatures in the thermal transport which can be used to infer SC gap structure in the coexistence phase.

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