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◆ New Journal of Physics2026-05-21· Physics

Symmetry-induced logarithmic relaxation in the quantum kicked rotor

Julien Hébraud, Floriane Arrouas, Bruno Peaudecerf, Juliette Billy, David Guery-Odelin, Oliver Giraud, B Georgeot, Gabriel Lemarié, Christian Miniatura

原始摘要(英文原文)· Original abstract
Abstract We study the effect of discrete symmetries on coherent multiple scattering in the quantum kicked rotor. When the initial momentum is set to zero—as in recent Bose–Einstein condensate experiments—the effective pseudo-disorder becomes even under momentum inversion. The resulting discrete mirror symmetry of the dynamics profoundly alters spectral correlations: it generates quasi-degenerate Floquet doublets localised at opposite momenta, whose exponentially small splittings produce a hierarchy of exponentially large dynamical timescales. The coherent backscattering and forward-scattering peaks then exhibit a striking non-monotonic evolution and strongly asymmetric contrasts, followed by an exceptionally slow logarithmic relaxation toward a common asymptotic value—a hallmark of glassy dynamics, here emerging in a fully coherent quantum system. That such archetypal glass-like behaviour arises from a single discrete symmetry constraint reveals an unexpected and deep connection between quantum coherence and slow relaxation phenomena.
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Symmetry-induced logarithmic relaxation in the quantum kicked rotor — 科研速览 Science Skim