Ab Initio Studies on Interactions in K$_3$C$_{60}$ under High Pressure
Abstract
Fullerene solids doped with alkali metals (AC, A = K, Rb, Cs) exhibit a superconducting transition temperature () as high as 40 K, and their unconventional superconducting properties have been a subject of debate. With application of high pressure on KC and RbC, the experiments demonstrate the decrease of . In this paper, we focus on KC and derive the structure of KC under different pressures based on first-principles calculations, exploring the trends of Coulomb interactions at various pressures. By utilizing the Maximally Localized Wannier function approach, Constrained Density Functional Perturbation Theory (cDFPT), and Constrained Random Phase Approximation (cRPA), we construct a microscopic low-energy model near the Fermi level. Our results strongly indicate that, in the KC system, as pressure increases, the effect of phonons is the key to intraorbital electron pairing. There is a dominance of the phonon-driven superconducting mechanism at high pressure.
Cite
@article{arxiv.2310.14057,
title = {Ab Initio Studies on Interactions in K$_3$C$_{60}$ under High Pressure},
author = {Jianyu Li and Zhangkai Cao and Jiahao Su and Ruipeng Wang and Haipeng Li and Yusuke Nomura and Xiaosen Yang and Ho-Kin Tang},
journal= {arXiv preprint arXiv:2310.14057},
year = {2023}
}