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Unconventional pressure dependence of the superfluid density in the nodeless topological superconductor $α$-PdBi$_2$

Published 22 Feb 2022 in cond-mat.supr-con and cond-mat.mtrl-sci | (2202.10859v1)

Abstract: We investigated the superconducting properties of the topological superconductor $\alpha$--PdBi$2$ at ambient and external pressures up to 1.77~GPa using muon spin rotation ($\mu$SR) experiments. The ambient pressure measurements evince a fully gapped $s$-wave superconducting state in the bulk of the specimen. AC magnetic susceptibility and $\mu$SR measurements manifest a continuous suppression of $T{\rm c}$ with increasing pressure. In parallel, we observed a significant decrease of superfluid density by $\sim$20\% upon application of external pressure. Remarkably, the superfluid density follows linear relation with $T_{\rm c}$ which was found before in some unconventional topological superconductors and hole doped cuprates. This finding signals a possible crossover from BEC to BCS in $\alpha$--PdBi$_2$.

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