Constraints on the superconducting state of Sr$_2$RuO$_4$ from elastocaloric measurements
Abstract
Strontium ruthenate SrRuO 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 SrRuO pairing debate by giving strong evidence against all odd-parity pairing states, including chiral -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 -wave or large -wave admixtures, where the latter possibility arises because of the body-centered point group symmetry. These -wave admixtures take the form of distinctively body-centered-periodic harmonics that have horizontal line nodes. Hence -wave and -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