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We investigate the dynamics of driving a polyelectrolyte such as DNA through a nanopore and into a cross‐linked gel. Placing the gel on the trans‐side of the nanopore can increase the translocation time while not negatively affecting the capture rates. Thus, this setup combines the mechanics of gel electrophoresis with nanopore translocation. However, contrary to typical gel electrophoresis scenarios,...
In this manuscript, Langevin Dynamics simulations and Tension‐Propagation theory are used to investigate the forced translocation of a polymer from a confining tube through a nanopore situated at one of the tube's ends. The diameter of the tube allows for a control over the polymer conformations: decreasing the tube diameter reduces the number of conformations available to the polymer chain both before...
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