Observation-Time-Induced Crossover from Fluctuating Diffusivity

Fuente: arXiv
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Main Authors: Shirataki, Masahiro, Akimoto, Takuma
Format: Preprint
Published: 2025
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author Shirataki, Masahiro
Akimoto, Takuma
author_facet Shirataki, Masahiro
Akimoto, Takuma
contents A sharp change in apparent mobility at a characteristic temperature that depends on the observation time has been reported in experiments and simulations of hydrated proteins. Such behavior is often discussed in the context of the protein dynamical transition, yet its general physical origin remains unclear. Here we show that fluctuating diffusivity within a Langevin framework naturally gives rise to an observation-time-induced crossover in translational diffusion: the effective diffusion coefficient exhibits a temperature-dependent change whose crossover point systematically shifts with the observation time. Through analytical and numerical analyses, we elucidate the mechanism of this crossover and identify the minimal conditions required for its emergence. Our results establish observation-time-induced crossover as a generic non-equilibrium phenomenon in systems with slowly relaxing mobility fluctuations. While distinct from internal dynamical transitions probed in neutron scattering, this framework provides a unified perspective that encompasses related finite-time crossover phenomena observed in hydrated proteins and other complex soft-matter systems.
format Preprint
id arxiv_https___arxiv_org_abs_2512_05471
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observation-Time-Induced Crossover from Fluctuating Diffusivity
Shirataki, Masahiro
Akimoto, Takuma
Statistical Mechanics
Soft Condensed Matter
A sharp change in apparent mobility at a characteristic temperature that depends on the observation time has been reported in experiments and simulations of hydrated proteins. Such behavior is often discussed in the context of the protein dynamical transition, yet its general physical origin remains unclear. Here we show that fluctuating diffusivity within a Langevin framework naturally gives rise to an observation-time-induced crossover in translational diffusion: the effective diffusion coefficient exhibits a temperature-dependent change whose crossover point systematically shifts with the observation time. Through analytical and numerical analyses, we elucidate the mechanism of this crossover and identify the minimal conditions required for its emergence. Our results establish observation-time-induced crossover as a generic non-equilibrium phenomenon in systems with slowly relaxing mobility fluctuations. While distinct from internal dynamical transitions probed in neutron scattering, this framework provides a unified perspective that encompasses related finite-time crossover phenomena observed in hydrated proteins and other complex soft-matter systems.
title Observation-Time-Induced Crossover from Fluctuating Diffusivity
topic Statistical Mechanics
Soft Condensed Matter
url https://arxiv.org/abs/2512.05471