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Simulating lattice fermion doubling with a Floquet drive

Published 14 Apr 2025 in hep-lat, cond-mat.mes-hall, hep-th, nucl-th, and quant-ph | (2504.10601v2)

Abstract: We consider a recently discovered mathematical correspondence between the spectra of a naively discretized lattice fermion and that of a periodically driven (i.e., Floquet) quantum system and turn it into an infrared equivalence between the two systems. The equivalence can be framed as a duality relation, allowing us to simulate a two-flavor discrete-time fermion theory on the lattice side, where the two flavors arise from time discretization, using a single-flavor fermion theory on the Floquet side. Our demonstration establishes an equivalence between (i) the fermion content, (ii) the correlation functions, and consequently (iii) observables of the two theories in the infrared. We also show how interactions may be incorporated into this equivalence.

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