English

Superconductivity under pressure in the Dirac semimetal PdTe2

Superconductivity 2019-12-09 v1

Abstract

The Dirac semimetal PdTe2_2 was recently reported to be a type-I superconductor (Tc=T_c = 1.64 K, μ0Hc(0)=13.6\mu_0 H_c (0) = 13.6 mT) with unusual superconductivity of the surface sheath. We here report a high-pressure study, p2.5p \leq 2.5 GPa, of the superconducting phase diagram extracted from ac-susceptibility and transport measurements on single crystalline samples. Tc(p)T_c (p) shows a pronounced non-monotonous variation with a maximum Tc=T_c = 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 T0T \rightarrow 0, Hc(0,p)H_c(0,p), follows a similar trend and consequently the Hc(T,p)H_c(T,p)-curves under pressure collapse on a single curve: Hc(T,p)=Hc(0,p)[1(T/Tc(p))2]H_c(T,p)=H_c(0,p)[1-(T/T_c(p))^2]. Surface superconductivity is robust under pressure as demonstrated by the large superconducting screening signal that persists for applied dc-fields Ha>HcH_a > H_c. Surprisingly, for p1.41p \geq 1.41 GPa the superconducting transition temperature at the surface TcST_c^S is larger than TcT_c 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 TcT_c with recent results from band structure calculations and discuss the importance of a Van Hove singularity.

Keywords

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

R2 v1 2026-06-23T07:33:04.082Z