Active elastic dimers: self-propulsion and current reversal on a featureless track
Statistical Mechanics
2011-11-10 v3 Soft Condensed Matter
Biomolecules
Abstract
We present a Brownian inchworm model of a self-propelled elastic dimer in the absence of an external potential. Nonequilibrium noise together with a stretch-dependent damping form the propulsion mechanism. Our model connects three key nonequilibrium features -- position-velocity correlations, a nonzero mean internal force, and a drift velocity. Our analytical results, including striking current reversals, compare very well with numerical simulations. The model unifies the propulsion mechanisms of DNA helicases, polar rods on a vibrated surface, crawling keratocytes and Myosin VI. We suggest experimental realizations and tests of the model.
Keywords
Cite
@article{arxiv.0708.1802,
title = {Active elastic dimers: self-propulsion and current reversal on a featureless track},
author = {K. Vijay Kumar and Sriram Ramaswamy and Madan Rao},
journal= {arXiv preprint arXiv:0708.1802},
year = {2011}
}
Comments
4 pages