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Sublattice modulated superconductivity in the Kagome Hubbard model

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arxiv 2302.08517 v3 pith:S24WKUIK submitted 2023-02-16 cond-mat.str-el cond-mat.mtrl-scicond-mat.supr-conphysics.comp-ph

classification cond-mat.str-elcond-mat.mtrl-scicond-mat.supr-conphysics.comp-ph
keywords modulatedcellcouplingd-wavegrouphubbardinstabilityintra-unit
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We identify a superconducting order featuring spatial pair modulations on the kagome lattice subject to onsite Hubbard U and nearest neighbor V interactions. Within our functional renormalization group analysis, this state appears with a concomitant d-wave superconducting (SC) instability at zero lattice momentum, where it distinguishes itself through intra-unit cell modulations of the pairing function thus breaking the discrete space group symmetry. The relative weight of the sublattice modulated superconductor (SMS) and d-wave SC is influenced by the absolute interaction strength and coupling ratio V /U . Parametrically adjacent to this domain at weak coupling, we find an intra-unit cell modulated vestigial charge density wave and an s-wave SC instability. Our study provides a microscopic setting and thorough description of this novel SMS arising within a translation symmetry broken background.

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  1. Competing phases in kagome magnet FeGe from functional renormalization

    cond-mat.str-el 2024-11 conditional novelty 6.0 of 10

    A DFT-plus-functional-renormalization-group study places FeGe close to competing charge-density-wave, spin-Pomeranchuk, and triplet superconducting instabilities, with superconductivity favored at slightly increased n...

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