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Correlation-induced triplet pairing superconductivity in graphene-based moir\'e systems

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arxiv 2105.00561 v3 pith:JVGUOYGE submitted 2021-05-02 cond-mat.supr-con cond-mat.mtrl-scicond-mat.str-el

Correlation-induced triplet pairing superconductivity in graphene-based moir\'e systems

classification cond-mat.supr-con cond-mat.mtrl-scicond-mat.str-el
keywords superconductivitycorrelation-inducedgraphene-basedmoirpairingstatesuperconductingsystems
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Motivated by the possible non-spin-singlet superconductivity in the magic-angle twisted trilayer graphene experiment, we investigate the triplet-pairing superconductivity arising from a correlation-induced spin-fermion model on a honeycomb lattice. We find that the $f$-wave pairing is favored due to the valley-sublattice structure, and the superconducting state is time-reversal symmetric, fully gapped, and non-topological. With a small in-plane magnetic field, the superconducting state becomes partially polarized, and the transition temperature can be slightly enhanced. Our results apply qualitatively for the triplet-pairing superconductivity in graphene-based moir\'e systems, which is fundamentally distinct from triplet superconductivity in $^3$He and ferromagnetic superconductors.

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