In this work we study the translocation process of a polymer through a nanochannel where a time dependent force is acting. Two conceptually different types of driving are used: a deterministic sinusoidal one and a random telegraph noise force. The mean translocation time presents interesting resonant minima as a function of the frequency of the external driving. For the computed sizes, the translocation time scales with the polymer length according to a power law with the same exponent for almost all the frequencies of the two driving forces. The dependence of the translocation time with the polymer rigidity, which accounts for the persistence length of the molecule, shows a different low frequency dependence for the two drivings
Using Langevin dynamics simulations, we investigate the influence of polymer-pore interactions on th...
This paper studies the features of a homopolymer translocating through a flexible pore. The channel ...
We study pore-blockade times for a translocating polymer of length N, driven by a field E across the...
In this work we study the assisted translocation of a polymer across a membrane nanopore, inside whi...
We study the translocation dynamics of a short polymer moving in a noisy environment and driven by ...
Polymer translocation has long been a topic of interest in the field of biological physics given its...
We investigate the dynamics of polymer translocation through nanopores under external driving by 3D...
AbstractWe study the passage times of a translocating polymer of length N in three dimensions, while...
We study the translocation dynamics of a polymer chain threaded through a nanopore by an external fo...
We study translocation of semiflexible polymers driven by force fd inside a nanometer-scale pore usi...
Using Langevin dynamics simulations, we investigate the translocation dynamics of an externally driv...
© 2018 EPLA. We consider the translocation dynamics of a polymer chain forced through a nanopore by ...
We develop a theory for polymer translocation driven by a time-dependent force through an oscillatin...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
© 2017 The Author(s). We study the driven translocation of a semi-flexible polymer through a nanopor...
Using Langevin dynamics simulations, we investigate the influence of polymer-pore interactions on th...
This paper studies the features of a homopolymer translocating through a flexible pore. The channel ...
We study pore-blockade times for a translocating polymer of length N, driven by a field E across the...
In this work we study the assisted translocation of a polymer across a membrane nanopore, inside whi...
We study the translocation dynamics of a short polymer moving in a noisy environment and driven by ...
Polymer translocation has long been a topic of interest in the field of biological physics given its...
We investigate the dynamics of polymer translocation through nanopores under external driving by 3D...
AbstractWe study the passage times of a translocating polymer of length N in three dimensions, while...
We study the translocation dynamics of a polymer chain threaded through a nanopore by an external fo...
We study translocation of semiflexible polymers driven by force fd inside a nanometer-scale pore usi...
Using Langevin dynamics simulations, we investigate the translocation dynamics of an externally driv...
© 2018 EPLA. We consider the translocation dynamics of a polymer chain forced through a nanopore by ...
We develop a theory for polymer translocation driven by a time-dependent force through an oscillatin...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
© 2017 The Author(s). We study the driven translocation of a semi-flexible polymer through a nanopor...
Using Langevin dynamics simulations, we investigate the influence of polymer-pore interactions on th...
This paper studies the features of a homopolymer translocating through a flexible pore. The channel ...
We study pore-blockade times for a translocating polymer of length N, driven by a field E across the...