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- W2319314070 abstract "We investigate the influence of chain rigidity on the dynamics of polymer translocation in the presence of binding particles (BPs) through a nanopore using two-dimensional Langevin dynamics simulations. With increasing chain rigidity $ensuremath{kappa}$, the mean translocation time $ensuremath{langle}ensuremath{tau}ensuremath{rangle}$ increases monotonically due to an increase in the radius of gyration and a decrease in the center of mass velocity. Particularly for weak binding, we further find that $ensuremath{langle}ensuremath{tau}ensuremath{rangle}$ shows a power-law behavior with the persistence length ${l}_{p}$. Analysis indicates a scaling relation between the average velocity of the center of mass of a chain $ensuremath{langle}{v}_{text{c.m.}}ensuremath{rangle}$ and ${l}_{p}$. As the chain becomes stiffer, the distribution of the translocation time $ensuremath{tau}$ approximates the Gaussian distribution and gets broader with the peak position being shifted towards longer translocation time. The corresponding translocation coordinate ${s}_{text{max}}$ of the maximum waiting time gets smaller with increasing chain rigidity. Finally, under an extremely low BP concentration, $ensuremath{langle}ensuremath{tau}ensuremath{rangle}$ shows a minimum for small $ensuremath{kappa}$, while it decreases monotonically for large $ensuremath{kappa}$ with increasing binding energy. Our results suggest a nontrivial effect of the intrinsic property of chains on the dynamics of polymer translocation driven by BPs." @default.
- W2319314070 created "2016-06-24" @default.
- W2319314070 creator A5015674373 @default.
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- W2319314070 date "2014-10-10" @default.
- W2319314070 modified "2023-10-16" @default.
- W2319314070 title "Polymer translocation through a nanopore driven by binding particles: Influence of chain rigidity" @default.
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- W2319314070 doi "https://doi.org/10.1103/physreve.90.042708" @default.
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