Cite this article:
Zhen-Wei Wu. A kinetic criterion for Stokes–Einstein relation breakdown based on effective collisional geometryJ. Chin. Phys. B, 2026, 35(5): 056402.
| Zhen-Wei Wu. A kinetic criterion for Stokes–Einstein relation breakdown based on effective collisional geometryJ. Chin. Phys. B, 2026, 35(5): 056402. |
A kinetic criterion for Stokes–Einstein relation breakdown based on effective collisional geometry
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Abstract
We propose a kinetic framework for interpreting the Stokes–Einstein (SE) relation breakdown in supercooled liquids by introducing an effective collision diameter, deff, derived from transport data. Numerical simulations of a model CuZr alloy reveal that deff increases upon cooling but saturates near the first peak of the radial distribution function just before SE breakdown. This saturation defines a geometric upper bound for the collisional cross-section beyond which further slowdown is governed by cooperative, heterogeneous motion rather than local collisional transport. Our analysis yields a compact criterion for SE breakdown in a mean-field perspective and provides physically interpretable inputs for future data-driven models of glassy dynamics. -
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