Singlet $s^\pm$-wave pairing in quasi-one-dimensional ACr$_3$As$_3$ (A=K, Rb, Cs) superconductors
Li-Da Zhang, Xiaoming Zhang, Juan-Juan Hao, Wen Huang, Fan Yang

TL;DR
This paper investigates the superconducting pairing symmetry in quasi-one-dimensional ACr$_3$As$_3$ compounds, identifying a novel singlet $s^\uparrow ext{ extminus}$wave pairing driven by spin fluctuations, with implications for topological superconductivity.
Contribution
It introduces a detailed theoretical analysis of pairing symmetries in ACr$_3$As$_3$ superconductors, highlighting the emergence of $s^\uparrow ext{ extminus}$wave pairing at intermediate interactions.
Findings
Identification of $s^\uparrow ext{ extminus}$wave pairing in KCr$_3$As$_3$
Prediction of a subgap spin resonance mode near the nesting vector
Potential realization of topological superconductivity via proximity effect
Abstract
The recent discovery of quasi-one-dimensional Chromium-based superconductivity has generated much excitement. We study in this work the superconducting instabilities of a representative compound, the newly synthesized KCrAs superconductor. Based on inputs from density functional theory calculations, we first construct an effective multi-orbital tight-binding Hamiltonian to model its low-energy band structure. We then employ standard random-phase approximation calculations to investigate the superconducting instabilities of the resultant multi-orbital Hubbard model. We find various pairing symmetries in the phase diagram in different interaction parameter regimes, including the triplet -wave, -wave and singlet -wave pairings. We argue that the singlet -wave pairing, which emerges at intermediate interaction strength, is realized in this material. This…
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