Quantum thermalization and average entropy of a subsystem
Smitarani Mishra, Shaon Sahoo

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Abstract
Page's seminal result on the average von Neumann (VN) entropy does not immediately apply to realistic many-body systems which are restricted to physically relevant smaller subspaces. We investigate here the VN entropy averaged over the pure states in the subspace corresponding to a narrow energy shell centered at energy . We find that the average entropy is , where represents first subsystem's effective number of states relevant to the energy scale . If and () is the Hilbert space dimension of the full system (first subsystem), we estimate that , where for nonintegrable (chaotic) systems and for integrable systems. This result can be reinterpreted as a volume-law of entropy, where the volume-law…
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