超导电性
凝聚态物理
配对
μ介子自旋谱学
热导率
物理
自旋(空气动力学)
对称(几何)
三重态
订单(交换)
电导率
热的
量子力学
热力学
数学
财务
经济
激发态
几何学
作者
Vivek Mishra,Ge Wang,P. J. Hirschfeld
标识
DOI:10.3389/fphy.2024.1397524
摘要
Considerable evidence shows that the heavy fermion material UTe 2 is a spin-triplet superconductor, possibly manifesting time-reversal symmetry breaking, as measured by Kerr effect below the critical temperature, in some samples. Such signals can arise due to a chiral orbital state or possible nonunitary pairing. Although experiments at low temperatures appear to be consistent with point nodes in the spectral gap, the detailed form of the order parameter and even the nodal positions are not yet determined. Thermal conductivity measurements can extend to quite low temperatures, and varying the heat current direction should be able to provide information on the order parameter structure. Here, we derive a general expression for the thermal conductivity of a spin-triplet superconductor and use it to compare the low-temperature behavior of various states proposed for UTe 2 .
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