English

Anisotropic multiband superconductivity in 2M-WS$_{2}$ probed by controlled disorder

Superconductivity 2024-11-28 v1

Abstract

The intrinsically superconducting Dirac semimetal 2M-WS2_{2} is a promising candidate to realize proximity-induced topological superconductivity in its protected surface states. A precise characterization of the bulk superconducting state is essential for understanding the nature of surface superconductivity in the system. Here, we perform a detailed experimental study of the temperature and nonmagnetic disorder dependence of the London penetration depth λ\lambda, the upper critical field Hc2H_{c2}, and the superconducting transition temperature TcT_c in 2M-WS2_{2}. We observe a power-law dependence λ(T)λ(0)T3\lambda(T) - \lambda(0) \propto T^{3} at temperatures below 0.35 Tc0.35~T_c, which is remarkably different from the expected exponential attenuation of a fully gapped isotropic ss-wave superconductor. We then probe the effect of controlled nonmagnetic disorder induced by 2.5 MeV electron irradiation at various doses and find a significant TcT_c suppression rate. Together with the observed increase of the slope dHc2/dTT=TcdH_{c2}/dT|_{T=T_c} with irradiation, our results reveal a strongly anisotropic s++s^{++} multiband superconducting state that takes the same sign on different Fermi sheets. Our results have direct consequences for the expected proximity-induced superconductivity of the topological surface states.

Keywords

Cite

@article{arxiv.2307.14891,
  title  = {Anisotropic multiband superconductivity in 2M-WS$_{2}$ probed by controlled disorder},
  author = {Sunil Ghimire and Kamal R. Joshi and Marcin Konczykowski and Romain Grasset and Amlan Datta and Makariy A. Tanatar and Damien Berube and Su-Yang Xu and Yuqiang Fang and Fuqiang Huang and Peter P. Orth and Mathias S. Scheurer and Ruslan Prozorov},
  journal= {arXiv preprint arXiv:2307.14891},
  year   = {2024}
}
R2 v1 2026-06-28T11:41:53.746Z