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On the effect of disorder in a $p$-wave flat-band superconductor

Published 22 Apr 2021 in cond-mat.supr-con | (2104.10852v1)

Abstract: We present a theoretical study of flat-band superconductivity for fully spin-polarized triplet pairing with $p$-wave symmetry. We consider the effect of disorder and calculate the disorder-averaged Green's functions diagrammatically in first-order Born approximation. In the clean limit, we find that, similarly to the case of $s$-wave pairing in a flat-band, both the gap and the critical temperature depend linearly on the attractive interaction strength. We derive the critical-temperature suppression formula for the flat-band case and find that $p$-wave flat-band superconductivity is more robust than the standard case of a band with finite density of states, particularly in more disordered samples.

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