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Lieb-Robinson bound and almost-linear light-cone in interacting boson systems

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arxiv 2103.11592 v3 pith:WR3HVGKU submitted 2021-03-22 quant-ph cond-mat.quant-gascond-mat.stat-mechhep-thmath-phmath.MP

Lieb-Robinson bound and almost-linear light-cone in interacting boson systems

classification quant-ph cond-mat.quant-gascond-mat.stat-mechhep-thmath-phmath.MP
keywords systemsalmost-linearbosonboundinteractinglight-conelocalprove
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this work, we investigate how quickly local perturbations propagate in interacting boson systems with Bose-Hubbard-type Hamiltonians. In general, these systems have unbounded local energies, and arbitrarily fast information propagation may occur. We focus on a specific but experimentally natural situation in which the number of bosons at any one site in the unperturbed initial state is approximately limited. We rigorously prove the existence of an almost-linear information-propagation light-cone, thus establishing a Lieb--Robinson bound: the wave-front grows at most as $t\log^2 (t)$. We prove the clustering theorem for gapped ground states and study the time complexity of classically simulating one-dimensional quench dynamics, a topic of great practical interest.

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