English

Unifying model of driven polymer translocation

Soft Condensed Matter 2015-06-03 v2 Biological Physics Computational Physics

Abstract

We present a Brownian dynamics model of driven polymer translocation, in which non-equilibrium memory effects arising from tension propagation (TP) along the cis side subchain are incorporated as a time-dependent friction. To solve the effective friction, we develop a finite chain length TP formalism, expanding on the work of Sakaue [Sakaue, PRE 76, 021803 (2007)]. The model, solved numerically, yields results in excellent agreement with molecular dynamics simulations in a wide range of parameters. Our results show that non-equilibrium TP along the cis side subchain dominates the dynamics of driven translocation. In addition, the model explains the different scaling of translocation time w.r.t chain length observed both in experiments and simulations as a combined effect of finite chain length and pore-polymer interactions.

Keywords

Cite

@article{arxiv.1111.4782,
  title  = {Unifying model of driven polymer translocation},
  author = {Timo Ikonen and Aniket Bhattacharya and Tapio Ala-Nissila and Wokyung Sung},
  journal= {arXiv preprint arXiv:1111.4782},
  year   = {2015}
}

Comments

7 pages, 3 figures

R2 v1 2026-06-21T19:38:59.505Z