Enhancement of Ising superconductivity in monolayer NbSe$_2$ via surface fluorination

Fuente: arXiv
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Auteurs principaux: Wu, Jizheng, Shi, Wujun, Wang, Chong, Duan, Wenhui, Xu, Yong, Si, Chen
Format: Preprint
Publié: 2024
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author Wu, Jizheng
Shi, Wujun
Wang, Chong
Duan, Wenhui
Xu, Yong
Si, Chen
author_facet Wu, Jizheng
Shi, Wujun
Wang, Chong
Duan, Wenhui
Xu, Yong
Si, Chen
contents Recently discovered Ising superconductors have garnered considerable interest due to their anomalously large in-plane upper critical fields ($B_{c2}$). However, the requisite strong spin-orbital coupling in the Ising pairing mechanism generally renders these superconductors heavy-element dominant with notably low superconducting transition temperatures ($T_c$). Here, based on the Migdal-Eliashberg theory and the mean-field Bogoliubov-de Gennes Hamiltonian, we demonstrate a significant enhancement of Ising superconductivity in monolayer NbSe$_2$ through surface fluorination, as evidenced by concomitant improvements in $T_c$ and $B_{c2}$. This enhancement arises from three predominant factors. Firstly, fluorine atoms symmetrically and stably adhere to both sides of the monolayer NbSe$_2$, thereby maintaining the out-of-plane mirror symmetry and locking carrier spins out-of-plane. Secondly, fluorination suppresses the charge density wave in monolayer NbSe$_2$ and induces a van Hove singularity in the vicinity of the Fermi level, leading to a marked increase in the number of carriers and, consequently, strengthening the electron-phonon coupling (EPC). Lastly, the appearance of fluorine-related, low-frequency phonon modes further augments the EPC. Our findings suggest a promising avenue to elevate $T_c$ in two-dimensional Ising superconductors without compromising their Ising pairing.
format Preprint
id arxiv_https___arxiv_org_abs_2401_03348
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Enhancement of Ising superconductivity in monolayer NbSe$_2$ via surface fluorination
Wu, Jizheng
Shi, Wujun
Wang, Chong
Duan, Wenhui
Xu, Yong
Si, Chen
Superconductivity
Recently discovered Ising superconductors have garnered considerable interest due to their anomalously large in-plane upper critical fields ($B_{c2}$). However, the requisite strong spin-orbital coupling in the Ising pairing mechanism generally renders these superconductors heavy-element dominant with notably low superconducting transition temperatures ($T_c$). Here, based on the Migdal-Eliashberg theory and the mean-field Bogoliubov-de Gennes Hamiltonian, we demonstrate a significant enhancement of Ising superconductivity in monolayer NbSe$_2$ through surface fluorination, as evidenced by concomitant improvements in $T_c$ and $B_{c2}$. This enhancement arises from three predominant factors. Firstly, fluorine atoms symmetrically and stably adhere to both sides of the monolayer NbSe$_2$, thereby maintaining the out-of-plane mirror symmetry and locking carrier spins out-of-plane. Secondly, fluorination suppresses the charge density wave in monolayer NbSe$_2$ and induces a van Hove singularity in the vicinity of the Fermi level, leading to a marked increase in the number of carriers and, consequently, strengthening the electron-phonon coupling (EPC). Lastly, the appearance of fluorine-related, low-frequency phonon modes further augments the EPC. Our findings suggest a promising avenue to elevate $T_c$ in two-dimensional Ising superconductors without compromising their Ising pairing.
title Enhancement of Ising superconductivity in monolayer NbSe$_2$ via surface fluorination
topic Superconductivity
url https://arxiv.org/abs/2401.03348