arXiv · 2609.23811
Robust Spin Universality Across a Ballistic-to-Diffusive Transport Crossover
Abstract
Whether a full counting statistical distribution preserves its universality class across a coherent-to-incoherent crossover is a fundamental question in open quantum systems. We resolve this for the infinite-$U$ Hubbard chain, showing that local density dephasing changes transport exponents without destroying the underlying non-Gaussian M-Wright spin fluctuations. Utilizing the exact spin-charge composition law inherent to impenetrable dynamics, we track the charge sector from ballistic flow to diffusive hydrodynamics. This dissipative crossover shifts the characteristic spin-transfer width from $t^{1/4}$ to $t^{1/8}$. Despite this altered scaling time, the central spin characteristic functions uniformly collapse onto a singular M-Wright scaling function, what we confirm using analytics as well as numerics.
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Cătălin Paşcu Moca, Ovidiu I. Pâţu, Balázs Dóra. 2026-09-20. Robust Spin Universality Across a Ballistic-to-Diffusive Transport Crossover. https://arxiv.org/abs/2609.23811
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