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Open Quantum Systems Decoherence Quantum Simulation

Diffusive Relaxation of Participation Entropy in U(1)-symmetric Dynamics

arXiv
Authors: Hanchen Liu, Tianci Zhou, Xiao Chen

Year

2026

Paper ID

68842

Status

Preprint

Abstract Read

~2 min

Abstract Words

142

Citations

0

Abstract

Participation entropy (PE) quantifies the spread of a many-body wavefunction across configuration space. While PE relaxes rapidly in generic chaotic systems, we show that U(1) conservation laws slow it down by imprinting with the slow hydrodynamic modes. Using a cluster expansion around equilibrium, we show that, after local density inhomogeneities decay, the leading PE deficit is dominated by squared connected density correlations. The long time relaxation is therefore controlled by diffusive correlation spreading, giving ΔS(t)sim t-1/2 in the hydrodynamic regime and crossing over to sim exp\[-O\(t/L2\)\] when tgeq L2. We confirm this entropy correlation relation using exact computation and infinite system tensor network simulations in various quantum U(1) conserving circuits. Our results establish PE as a sensitive probe of hydrodynamic memory and suggest that slow relaxation is a generic consequence of conservation laws.

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  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
  • It adds a 2026 reference point for readers tracking recent quantum research.
  • Participation entropy (PE) quantifies the spread of a many-body wavefunction across configuration space.

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