arXiv · 2503.23428
Penetration of surface effects on structural relaxation and particle hops in glassy films
Abstract
A free surface induces enhanced dynamics in glass formers. We study the dynamical enhancement of glassy films with a distinguishable-particle lattice model of glass free of elastic effects. We demonstrate that the thickness of the surface mobile layer depends on temperature differently under different definitions, although all are based on local structure relaxation rate. The rate can be fitted to a double exponential form with an exponential-of-power-law tail. Our approach and results exclude elasticity as the unique mechanism for the tail. Layer-resolved particle hopping rate, potentially a key measure for activated hopping, is also studied but it exhibits much shallower surface effects.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Qiang Zhai, Hai-Yao Deng, Xin-Yuan Gao, Leo S. I. Lam, Sen Yang, Ke Yan, Chi-Hang Lam. 2025-03-30. Penetration of surface effects on structural relaxation and particle hops in glassy films. https://arxiv.org/abs/2503.23428
Cite the original work for its findings. Save a collection to share your selection of sources.