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Time evolution of a quantum many-body system: transition from integrability to ergodicity in thermodynamic limit

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arxiv cond-mat/9707180 v1 pith:FNPXPPFN submitted 1997-07-17 cond-mat.stat-mech chao-dyncond-mat.str-elnlin.CD

Time evolution of a quantum many-body system: transition from integrability to ergodicity in thermodynamic limit

classification cond-mat.stat-mech chao-dyncond-mat.str-elnlin.CD
keywords quantumergodicitylimitmany-bodysystemthermodynamictransportbehavior
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Numerical evidence is given for non-ergodic (non-mixing) behavior, exhibiting ideal transport, of a simple non-integrable many-body quantum system in the thermodynamic limit, namely kicked $t-V$ model of spinless fermions on a ring. However, for sufficiently large kick parameters $t$ and $V$ we recover quantum ergodicity, and normal transport, which can be described by random matrix theory.

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  1. Crystalline Spectral Form Factors

    quant-ph 2025-12 conditional novelty 6.0

    Strong level repulsion produces damped crystalline oscillations of the spectral form factor, with a Debye-Waller suppression, a new plateau time scale t* ≈ t_H sqrt(β/4), and predictable derivative singularities.