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A Chiral Triplet Quasi-Two-Dimensional Superconductor in a Parallel Magnetic Field

Superconductivity 2022-06-08 v1

Abstract

We calculate the parallel upper critical magnetic field H(0)H_{\parallel}(0) for an in-plane isotropic quasi-two-dimensional (Q2D) chiral triplet superconductor at zero temperature, T=0T=0. In particular, the ratio H(0)/(dHGL/dTT=TcTc)=0.815H_{\parallel}(0)/(|dH^{GL}_{\parallel}/dT|_{T=T_c}T_c) = 0.815 is defined, where dHGL/dTT=Tc|dH^{GL}_{\parallel}/dT|_{T=T_c} is the so-called Ginzburg-Landau slope of the upper critical magnetic field, TcT_c is a superconducting transition temperature at H=0H=0. We show that the theoretically obtained above mentioned value strongly contradicts to the experimentally measured ones in a candidate for a chiral triplet superconductivity Sr2_2RuO4_4, which provides one more argument against the chiral triplet scenario of superconductivity in this compound. Our results may be useful for establishing chiral triplet superconductivity in other Q2D candidates for this phenomenon.

Keywords

Cite

@article{arxiv.2205.14773,
  title  = {A Chiral Triplet Quasi-Two-Dimensional Superconductor in a Parallel Magnetic Field},
  author = {Andrei G. Lebed},
  journal= {arXiv preprint arXiv:2205.14773},
  year   = {2022}
}

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6 pages