paper

Superconductivity enhanced by abundant low-energy phonons in (SrCa)RhSn

arXiv:2108.00434

Abstract

The effects of structural quantum criticality on the strong-coupling superconductivity of (SrCa)RhSn have been investigated via electrical resistivity and specific heat measurements. We demonstrate that the lattice specific heat at low temperatures considerably increases toward the structural quantum critical point (SQCP), . The superconducting gap increases with in the exact same fashion as the low-temperature lattice specific heat, clearly indicating that the abundant low-energy phonons cause strong-coupling superconductivity. Despite the electron-phonon interaction, which is much more enhanced than the electron correlation, the low-temperature electrical resistivity near the SQCP varies as . This finding suggests that structural quantum fluctuation affects the power law arising from the electron-phonon scattering.

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