Gary W. Slater
Affiliations: | Physics | University of Ottawa, Ottawa, ON, Canada |
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Children
Sign in to add traineeFrédéric Tessier | grad student | 1999-2005 | University of Ottawa |
Tyler N. Shendruk | grad student | 2014 | University of Ottawa |
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Publications
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Qiao L, Slater GW. (2020) Capture of rod-like molecules by a nanopore: Defining an "orientational capture radius". The Journal of Chemical Physics. 152: 144902 |
Bagheri M, Slater GW. (2020) Diffusion in an array of immobile anisotropic obstacles: The influence of local orientation, bottlenecks, and free volume in absence of dead-ends Physica a-Statistical Mechanics and Its Applications. 539: 122924 |
Qiao L, Ignacio M, Slater GW. (2019) Voltage-driven translocation: Defining a capture radius. The Journal of Chemical Physics. 151: 244902 |
Wang H, de Haan HW, Slater GW. (2019) Electrophoretic ratcheting of spherical particles in well/channel microfluidic devices: Making particles move against the net field. Electrophoresis |
de Haan HW, Sean D, Slater GW. (2018) Reducing the variance in the translocation times by prestretching the polymer. Physical Review. E. 98: 022501 |
Sean D, Slater GW. (2017) Highly driven polymer translocation from a cylindrical cavity with a finite length. The Journal of Chemical Physics. 146: 054903 |
Sean D, Slater GW. (2017) Langevin dynamcis simulations of driven polymer translocation into a cross-linked gel. Electrophoresis. 38: 653-658 |
Shendruk TN, Sean D, Berard DJ, et al. (2017) Rotation-induced macromolecular spooling of DNA Physical Review X. 7: 31005 |
Leith JS, Kamanzi A, Sean D, et al. (2016) Free Energy of a Polymer in Slit-like Confinement from the Odijk Regime to the Bulk Macromolecules. 49: 9266-9271 |
Shendruk TN, Bertrand M, Slater GW. (2015) Electrophoretic Mobility of Polyelectrolytes within a Confining Well. Acs Macro Letters. 4: 472-476 |