Thermal Hall conductivity of spin-triplet superconductor with time reversal symmetry breaking

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Abstract

The thermal Hall conductivity is investigated for the superconductor Sr2RuO4 assuming a time reversal symmetry breaking order parameter. The γ band of Sr2RuO4 has its Fermi level near the van Hove points, close to the Lifshitz transition. Within a Bogoliubov-de Gennes approach we calculate the thermal Hall conductivity for pairing symmetries including two exemplary cases, the usual chiral p-wave phase and a fx2-y2-wave phase of the structure . In the chiral p-wave phase the thermal Hall conductivity consists of a universal temperature-linear term and an exponential correction due to quasiparticle activation with a full excitation gap. Due to line-nodes in the gap we find a correction which is quadratic in temperature for fx2-y2-wave state. This difference in the corrections allows to analyze the gap structure of the superconducting phase.

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Imai, Y., Wakabayashi, K., & Sigrist, M. (2017). Thermal Hall conductivity of spin-triplet superconductor with time reversal symmetry breaking. In Journal of Physics: Conference Series (Vol. 807). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/807/10/102006

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