arXiv · 1102.2389
Thermalization in Nature and on a Quantum Computer
Abstract
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body systems, building on the program of dynamical typicality. We introduce a novel perturbation theorem for physically relevant weak system-bath couplings that is applicable even in the thermodynamic limit. We identify conditions under which thermalization happens and discuss the underlying physics. Based on these results, we also present a fully general quantum algorithm for preparing Gibbs states on a quantum computer with a certified runtime and error bound. This complements quantum Metropolis algorithms, which are expected to be efficient but have no known runtime estimates and only work for local Hamiltonians.
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Arnau Riera, Christian Gogolin, Jens Eisert. 2012-03-12. Thermalization in Nature and on a Quantum Computer. https://doi.org/10.1103/physrevlett.108.080402
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