English

Superconductivity in Ca-intercalated bilayer graphene: C$_{2}$CaC$_{2}$

Superconductivity 2024-05-07 v1

Abstract

The deposition and intercalation of metal atoms can induce superconductivity in monolayer and bilayer graphenes. For example, it has been experimentally proved that Li-deposited graphene is a superconductor with critical temperature TcT_{c} of 5.9 K, Ca-intercalated bilayer graphene C6_{6}CaC6_{6} and K-intercalated epitaxial bilayer graphene C8_{8}KC8_{8} are superconductors with TcT_{c} of 2-4 K and 3.6 K, respectively. However, the TcT_{c} of them are relatively low. To obtain higher TcT_{c} in graphene-based superconductors, here we predict a new Ca-intercalated bilayer graphene C2_{2}CaC2_{2}, which shows higher Ca concentration than the C6_{6}CaC6_{6}. It is proved to be thermodynamically and dynamically stable. The electronic structure, electron-phonon coupling (EPC) and superconductivity of C2_{2}CaC2_{2} are investigated based on first-principles calculations. The EPC of C2_{2}CaC2_{2} mainly comes from the coupling between the electrons of C-pzp_{z} orbital and the high- and low-frequency vibration modes of C atoms. The calculated EPC constant λ\lambda of C2_{2}CaC2_{2} is 0.75, and the superconducting TcT_{c} is 18.9 K, which is much higher than other metal-intercalated bilayer graphenes. By further applying -4\% biaxial compressive strain to C2_{2}CaC2_{2}, the TcT_{c} can be boosted to 26.6 K. Thus, the predicted C2_{2}CaC2_{2} provides a new platform for realizing superconductivity with the highest TcT_{c} in bilayer graphenes.

Keywords

Cite

@article{arxiv.2312.01363,
  title  = {Superconductivity in Ca-intercalated bilayer graphene: C$_{2}$CaC$_{2}$},
  author = {Jin-Han Tan and Hao Wang and Ying-Jie Chen and Na Jiao and Meng-Meng Zheng and Hong-Yan Lu and Ping Zhang},
  journal= {arXiv preprint arXiv:2312.01363},
  year   = {2024}
}

Comments

29 pages,11 figures

R2 v1 2026-06-28T13:39:32.993Z