Impurity effect as a probe for the pairing symmetry of graphene-based superconductors
Abstract
The single impurity effect on the graphene-based superconductor is studied theoretically. Four different pairing symmetries are discussed. Sharp resonance peaks are found near the impurity site for the -wave pairing symmetry and the -wave pairing symmetry when the chemical potential is large. As the chemical potential decreases, the in-gap states are robust for the pairing symmetry while they disappear for the pairing symmetry. Such in-gap peaks are absent for the fully gapped extended -wave pairing symmetry and the nodal -wave pairing symmetry. The existence of the in-gap resonance peaks can be explained well based on the sign-reversal of the superconducting gap along different Fermi pockets and by analyzing the denominator of the -matrix. All of the features can be accessed by the experiments, which provide a useful probe for the pairing symmetry of graphene-based superconductors.
Keywords
Cite
@article{arxiv.1803.05841,
title = {Impurity effect as a probe for the pairing symmetry of graphene-based superconductors},
author = {Yuan-Qiao Li and Tao Zhou},
journal= {arXiv preprint arXiv:1803.05841},
year = {2021}
}
Comments
7 pages, 7 figures