arXiv · 2101.11280
Nodeless superconductivity in the charge density wave superconductor LaPt$_2$Si$_2$
Abstract
We have studied the superconducting gap structure of LaPt$_2$Si$_2$ by measuring the temperature dependence of the London penetration depth shift $\Delta\lambda(T)$ and point contact spectroscopy of single crystals. $\Delta\lambda(T)$ shows an exponential temperature dependence at low temperatures, and the derived normalized superfluid density $\rho_{s}(T)$ can be well described by a single-gap s-wave model. The point-contact conductance spectra can also be well fitted by an s-wave Blonder-Tinkham-Klapwijk model, where the gap value shows a typical BCS temperature and magnetic field dependence consistent with type-II superconductivity. These results suggest fully gapped superconductivity in LaPt$_2$Si$_2$, with moderately strong electron-phonon coupling.
Explore related subjects
Keep this discovery
Z. Y. Nie, L. C. Yin, A. Thamizhavel, A. Wang, B. Shen, L. Q. Che, F. Du, Z. Hossain, M. Smidman, X. Lu, H. Q. Yuan. 2021-01-27. Nodeless superconductivity in the charge density wave superconductor LaPt$_2$Si$_2$. https://doi.org/10.1103/physrevb.103.014515
Cite the original work for its findings. Save a collection to share your selection of sources.