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Feynman-Vernon influence functional (IF) was originally introduced to describe the effect of a quantum environment on the dynamics of an open quantum system.
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Paolo Pietro Mazza, Gabriele Perfetto, Alessio Lerose, Mario Collura, and Andrea Gambassi, “Suppression of transport in nondisordered quantum spin chains due to confined excitations,” Phys. Rev. B 99
2019
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Yaodong Li, Xiao Chen, and Matthew P. A. Fisher, “Measurement-driven entanglement transition in hybrid quantum circuits,” Phys. Rev. B 100
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Lorenzo Piroli, Bruno Bertini, J. Ignacio Cirac, and Toma ž Prosen, “Exact dynamics in dual-unitary quantum circuits,” Phys. Rev. B 101
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Alessio Lerose, Federica M. Surace, Paolo P. Mazza, Gabriele Perfetto, Mario Collura, and Andrea Gambassi, “Quasilocalized dynamics from confinement of quantum excitations,” Phys. Rev. B 102
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2020
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Michael Sonner, Maksym Serbyn, Zlatko Papic, and Dmitry A. Abanin, “Thouless energy in a floquet model of many-body localization,” (2020), to appear
2020
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2021
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2021
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Alessio Lerose, Michael Sonner, and Dmitry A. Abanin, “to appear,” arXiv e-prints (2021)
2021
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