Evidence of growing spatial correlations at the glass transition from nonlinear response experiments
Abstract
The ac nonlinear dielectric response of glycerol was measured close to its glass transition temperature to investigate the prediction that supercooled liquids respond in an increasingly non-linear way as the dynamics slows down (as spin-glasses do). We find that indeed displays several non trivial features. It is peaked as a function of the frequency and obeys scaling as a function of , with the relaxation time of the liquid. The height of the peak, proportional to the number of dynamically correlated molecules , increases as the system becomes glassy, and decays as a power-law of over several decades beyond the peak. These findings confirm the collective nature of the glassy dynamics and provide the first direct estimate of the dependence of .
Keywords
Cite
@article{arxiv.1002.0498,
title = {Evidence of growing spatial correlations at the glass transition from nonlinear response experiments},
author = {C. Crauste-Thibierge and C. Brun and F. Ladieu and D. L'Hote and G. Biroli and J-P. Bouchaud},
journal= {arXiv preprint arXiv:1002.0498},
year = {2015}
}
Comments
22 pages, 6 figures. With respect to v1, a few new sentences were added in the introduction and conclusion, references were updated, some typos corrected.