arXiv · 1502.03928
Theory for superconductivity in alkali chromium arsenides A2Cr3As3 (A=K,Rb,Cs)
Abstract
We propose an extended Hubbard model with three molecular orbitals on a hexagonal lattice with $D_{3h}$ symmetry to study recently discovered superconductivity in A$_2$Cr$_3$As$_3$ (A=K,Rb,Cs). Effective pairing interactions from paramagnon fluctuations are derived within the random phase approximation, and are found to be most attractive in spin triplet channels. At small Hubbard $U$ and moderate Hund's coupling, the pairing arises from 3-dimensional (3D) $\gamma$ band and has a spatial symmetry $f_{y(3x^{2}-y^{2})}$, which gives line nodes in the gap function. At large $U$, a fully gapped $p$-wave state, $p_{z}\hat{z}$ dominates at the quasi-1D $\alpha $-band.
Explore related subjects
Keep this discovery
Yi Zhou, Chao Cao, Fu-Chun Zhang. 2015-02-13. Theory for superconductivity in alkali chromium arsenides A2Cr3As3 (A=K,Rb,Cs). https://doi.org/10.1016/j.scib.2017.01.011
Cite the original work for its findings. Save a collection to share your selection of sources.