English

Superconducting Penetration Depth Through a Van Hove Singularity: Sr$_2$RuO$_4$ Under Uniaxial Stress

Superconductivity 2023-12-12 v2

Abstract

In the unconventional superconductor Sr2_2RuO4_4, uniaxial stress along the [100][100] direction tunes the Fermi level through a Van Hove singularity (VHS) in the density of states, causing a strong enhancement of the superconducting critical temperature TcT_\textrm{c}. Here, we report measurements of the London penetration depth λ\lambda as this tuning is performed. We find that the zero-temperature superfluid density, here defined as λ(0)2\lambda(0)^{-2}, increases by \sim15%, with a peak that coincides with the peak in TcT_\textrm{c}. We also find that the low temperature form of λ(T)\lambda(T) is quadratic over the entire strain range. Using scanning tunneling microscopy, we find that the gap increases from Δ0350 μ\Delta_0 \approx 350~\mueV in unstressed Sr2_2RuO4_4 to Δ0600 μ\Delta_0 \approx 600~\mueV in a sample strained to near the peak in TcT_c. With a nodal order parameter, an increase in the superconducting gap could bring about an increase in the superfluid density through reduced sensitivity to defects and through reduced non-local effects in the Meissner screening. Our data indicate that tuning to the VHS increases the gap throughout the Brillouin zone, and that non-local effects are likely more important than reduced scattering.

Keywords

Cite

@article{arxiv.2312.05130,
  title  = {Superconducting Penetration Depth Through a Van Hove Singularity: Sr$_2$RuO$_4$ Under Uniaxial Stress},
  author = {Eli Mueller and Yusuke Iguchi and Fabian Jerzembeck and Jorge O. Rodriguez and Marisa Romanelli and Edgar Abarca-Morales and Anastasios Markou and Naoki Kikugawa and Dmitry A. Sokolov and Gwansuk Oh and Clifford W. Hicks and Andrew P. Mackenzie and Yoshiteru Maeno and Vidya Madhavan and Kathryn A. Moler},
  journal= {arXiv preprint arXiv:2312.05130},
  year   = {2023}
}