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Constraints on the superconducting state of Sr$_2$RuO$_4$ from elastocaloric measurements

Superconductivity 2023-10-02 v2

Abstract

Strontium ruthenate Sr2_2RuO4_4 is an unconventional superconductor whose pairing symmetry has not been fully clarified, despite more than two decades of intensive research. Recent NMR Knight shift experiments have rekindled the Sr2_2RuO4_4 pairing debate by giving strong evidence against all odd-parity pairing states, including chiral pp-wave pairing that was for a long time the leading pairing candidate. Here, we exclude additional pairing states by analyzing recent elastocaloric measurements [YS. Li et al., Nature 607, 276--280 (2022)]. To be able to explain the elastocaloric experiment, we find that unconventional even-parity pairings must include either large dx2y2d_{x^2 - y^2}-wave or large {dxzdyz}\{d_{xz} \mid d_{yz}\}-wave admixtures, where the latter possibility arises because of the body-centered point group symmetry. These {dxzdyz}\{d_{xz} \mid d_{yz}\}-wave admixtures take the form of distinctively body-centered-periodic harmonics that have horizontal line nodes. Hence gxy(x2y2)g_{xy(x^2-y^2)}-wave and dxyd_{xy}-wave pairings are excluded as possible dominant even pairing states.

Keywords

Cite

@article{arxiv.2304.07182,
  title  = {Constraints on the superconducting state of Sr$_2$RuO$_4$ from elastocaloric measurements},
  author = {Grgur Palle and Clifford Hicks and Roser Valentí and Zhenhai Hu and You-Sheng Li and Andreas Rost and Michael Nicklas and Andrew P. Mackenzie and Jörg Schmalian},
  journal= {arXiv preprint arXiv:2304.07182},
  year   = {2023}
}

Comments

22 pages, 8 figures