Relaxation toward an Ideal Chern Band through Coupling to a Markovian Bath
Abstract
We propose a microscopic, weak-coupling mechanism by which generic Chern bands asymptotically relax toward ideal bands.
We consider coupling interacting electrons to a Caldeira-Leggett-like Ohmic bosonic bath.
Using the Born-Markov approximation, we analytically show that, upon taking the leading order contribution in momentum of the form factor, Slater determinant states of a Chern band under Hartree-Fock approximation evolve toward Slater determinant states corresponding to an ideal Chern band.
We also numerically validate our proposal by performing simulation of a massive Dirac model with the extended Hubbard interaction, showing that the Berry curvature and quantum metric co-evolve toward saturation of the trace condition.
Our proposal provides a concrete dissipative mechanism for driving Chern bands toward ideal quantum geometry, a fundamental building block for the stabilization of fractional Chern insulators.
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