English

Electronic states in superconducting type-II Dirac semimetal: 1T-PdSeTe

Superconductivity 2024-12-30 v2 Materials Science

Abstract

We have investigated the surface and bulk electronic structures of the superconducting type-II Dirac semimetal 1T-PdSeTe. The superconducting transition temperature TC=3.2T_C = 3.2 K was almost twice as high as TC=1.6T_C = 1.6 K in 1T-PdTe2_2. Scanning transmission electron microscopy measurements showed homogeneously mixed Se and Te atoms in the chalcogen layers, consistent with the CdI2_2-type crystal structure. Angle-resolved photoemission spectroscopy measurements and density functional theory calculations indicated the existence of the topological surface states, and the overall band structures were similar to those of 1T-PdTe2_2. These results suggest that CdI2_2-type lattice symmetry dictates the band dispersion, regardless of atomic disorder in the chalcogen layers. As the electronic band dispersion and the local structures were persistent upon substitution, the enhancement of TCT_C is likely associated with the chemical pressure. Our results provide insight into the effects of the solid solution on the surface and bulk electronic states as well as the superconducting transition temperature.

Keywords

Cite

@article{arxiv.2408.15500,
  title  = {Electronic states in superconducting type-II Dirac semimetal: 1T-PdSeTe},
  author = {Yogendra Kumar and Shiv Kumar and Venkateswara Yenugonda and Ryohei Oishi and Jayita Nayak and Chaoyu Chen and Ravi Prakash Singh and Takahiro Onimaru and Yasuyuki Shimura and Shinichiro Ideta and Kenya Shimada},
  journal= {arXiv preprint arXiv:2408.15500},
  year   = {2024}
}

Comments

Quantum materials, Dirac semimetal, Weyl semimetal, Topological insulator, Topological superconductor, angle-resolved Photoemission spectroscopy, superconductivity

R2 v1 2026-06-28T18:26:07.547Z