Strong electron–phonon coupling and multigap superconductivity in 2H/1T Janus MoSLi monolayer

Author:

Xie Hongmei1ORCID,Huang Zhijing1,Zhao Yinchang2ORCID,Huang Hao3,Li Geng45ORCID,Gu Zonglin1ORCID,Zeng Shuming1ORCID

Affiliation:

1. College of Physics Science and Technology, Yangzhou University 1 , Jiangsu 225009, China

2. Department of Physics, Yantai University 2 , Yantai 264005, China

3. Advanced Copper Industry College, Jiangxi University of Science and Technology 3 , Yingtan 335000, China

4. China Rare Earth Group Research Institute 4 , Ganzhou, Jiangxi 341000, China

5. Key Laboratory of Rare Earths, Chinese Academy of Sciences 5 , Ganzhou, Jiangxi 341000, China

Abstract

Two-dimensional (2D) Janus transition metal dichalcogenides MXY manifest novel physical properties owing to the breaking of out-of-plane mirror symmetry. Recently, the 2H phase of MoSH has been demonstrated to possess intrinsic superconductivity, whereas the 1T phase exhibits a charge density waves state. In this paper, we have systematically studied the stability and electron–phonon interaction characteristics of MoSLi. Our results have shown that both the 2H and 1T phases of MoSLi are stable, as indicated by the phonon spectrum and the ab initio molecular dynamics. However, the 1T phase exhibits an electron–phonon coupling constant that is twice as large as that of the 2H phase. In contrast to MoSH, the 1T phase of MoSLi exhibits intrinsic superconductivity. By employing the ab initio anisotropic Migdal-Eliashberg formalism, we have revealed the two-gap superconducting nature of 1T-MoSLi, with a transition temperature (Tc) of 14.8 K. The detailed analysis indicates that the superconductivity in 1T-MoSLi primarily originates from the interplay between the vibration of the phonon modes in the low-frequency region and the dz2 orbital. These findings provide a fresh perspective on superconductivity within Janus structures.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province for Major Basic Research

Open Research Fund Program of the State Key Laboratory of Low-Dimensional Quantum Physics

Scientific Research Foundation for Doctor of Jiangxi University of Science and Technology

Open Fund of Key Laboratory of Rare Earths

Publisher

AIP Publishing

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