Universal Scaling Laws for Large Events in Driven Nonequilibrium Systems
Chaotic Dynamics
2015-06-26 v1 Statistical Mechanics
Quantitative Methods
Abstract
For many driven-nonequilibrium systems, the probability distribution functions of magnitude and recurrence-time of large events follow a powerlaw indicating a strong temporal correlation. In this paper we argue why these probability distribution functions are ubiquitous in driven nonequilibrium systems, and we derive universal scaling laws connecting the magnitudes, recurrence-time, and spatial intervals of large events. The relationships between the scaling exponents have also been studied. We show that the ion-channel current in Voltage-dependent Anion Channels obeys the universal scaling law.
Cite
@article{arxiv.nlin/0604042,
title = {Universal Scaling Laws for Large Events in Driven Nonequilibrium Systems},
author = {M. K. Verma and S. Manna and J. Banerjee and S. Ghosh},
journal= {arXiv preprint arXiv:nlin/0604042},
year = {2015}
}
Comments
9 pages, 5 figures