Superconductivity under pressure in the Dirac semimetal PdTe2
Abstract
The Dirac semimetal PdTe was recently reported to be a type-I superconductor (1.64 K, mT) with unusual superconductivity of the surface sheath. We here report a high-pressure study, GPa, of the superconducting phase diagram extracted from ac-susceptibility and transport measurements on single crystalline samples. shows a pronounced non-monotonous variation with a maximum 1.91 K around 0.91 GPa, followed by a gradual decrease to 1.27 K at 2.5 GPa. The critical field of bulk superconductivity in the limit , , follows a similar trend and consequently the -curves under pressure collapse on a single curve: . Surface superconductivity is robust under pressure as demonstrated by the large superconducting screening signal that persists for applied dc-fields . Surprisingly, for GPa the superconducting transition temperature at the surface is larger than of the bulk. Therefore surface superconductivity may possibly have a non-trivial nature and is connected to the topological surface states detected by ARPES. We compare the measured pressure variation of with recent results from band structure calculations and discuss the importance of a Van Hove singularity.
Cite
@article{arxiv.1902.01953,
title = {Superconductivity under pressure in the Dirac semimetal PdTe2},
author = {H. Leng and A. Ohmura and L. N. Anh and F. Ishikawa and T. Naka and Y. K. Huang and A. de Visser},
journal= {arXiv preprint arXiv:1902.01953},
year = {2019}
}
Comments
manuscript 9 pages with 8 figures + supplemental material 3 pages with 6 figures