Relaxation dynamics of an elastic string in random media
Abstract
We investigate numerically the relaxation dynamics of an elastic string in two-dimensional random media by thermal fluctuations starting from a flat configuration. Measuring spatial fluctuations of its mean position, we find that the correlation length grows in time asymptotically as . This implies that the relaxation dynamics is driven by thermal activations over random energy barriers which scale as with a length scale . Numerical data strongly suggest that the energy barrier exponent is identical to the energy fluctuation exponent . We also find that there exists a long transient regime, where the correlation length follows a power-law dynamics as with a nonuniversal dynamic exponent . The origin of the transient scaling behavior is discussed in the context of the relaxation dynamics on finite ramified clusters of disorder.
Cite
@article{arxiv.0908.4154,
title = {Relaxation dynamics of an elastic string in random media},
author = {Jae Dong Noh and Hyunggyu Park},
journal= {arXiv preprint arXiv:0908.4154},
year = {2015}
}