English

Coexistence of topological surface states and superconductivity in Dirac semimetal NiTe$_2$

Superconductivity 2025-03-04 v1

Abstract

The coexistence of topological bands around the Fermi level (EFE_F) and superconductivity provides a fundamental platform for exploring their interplay. However, few materials inherently display both properties. In this study, we demonstrate the coexistence of topological surface states at the EFE_F and superconductivity in NiTe2_2 single crystals, a material hitherto not recognized as superconducting. Quasiparticle interference measurements performed via scanning tunneling microscopy suggest the presence of topological surface states at the EFE_F, which is further corroborated by density functional theory simulations. Experimental evidence for superconductivity is provided via electronic transport measurements and specific heat capacity analyses. Our results suggest that NiTe2_2 represents a promising platform for investigating the rich interplay between topological states and superconductivity.

Keywords

Cite

@article{arxiv.2503.01337,
  title  = {Coexistence of topological surface states and superconductivity in Dirac semimetal NiTe$_2$},
  author = {Chen He and Jian-Zhou Zhao and Mei Du and Luo-Zhao Zhang and Jia-Ying Zhang and Kuo Yang and Noah F. Q. Yuan and Aleksandr Seliverstov and Ewald Janssens and Jun-Yi Ge and Zhe Li},
  journal= {arXiv preprint arXiv:2503.01337},
  year   = {2025}
}