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Quantum metric induced hole dispersion and emergent particle-hole symmetry in topological flat bands

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arxiv 2409.08324 v1 pith:7B7ZILK5 submitted 2024-09-12 cond-mat.str-el cond-mat.mes-hall

classification cond-mat.str-elcond-mat.mes-hall
keywords bandsdispersionholequantumflatgeometryparticle-holeboldsymbol
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abstract

The emergent hole dispersion in flat bands is an invaluable platform to study the interplay of quantum geometry and electron-electron interaction with a relatively simple setting. In this work, we find that the hole dispersion in ideal bands has a linear relationship with the trace of the quantum geometry tensor at every $\boldsymbol{k}$-point for a wide range of interactions to a good approximation. Next, we give a microscopic analysis on the hole dispersion and show that the linear relationships for short-range and long-range interactions in $\boldsymbol{k}$-space have different origins. Moreover, we show how to exploit this observation to engineer particle-hole symmetry in a Chern band with fluctuating quantum geometry. Our results will be useful for further studying the physics in particle-hole symmetric flat bands both in theory and in experiment.

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  1. Ideal Bands in Tight-Binding Models

    cond-mat.mes-hall 2026-07 conditional novelty 6.0 of 10

    Ideal Chern bands with Chern number 1 exist in finite-band models with exponentially decaying hopping when orbital positions differ, but no nonzero-Chern ideal band can exist with finite-range hopping.

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