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- W4313591256 abstract "Experiment, theory, and simulation are employed to understand the dispersion of colloidal particles in a periodic array of oscillating harmonic traps generated by optical tweezers. In the presence of trap oscillation, a nonmonotonic and anisotropic dispersion is observed. Surprisingly, the stiffest traps produce the largest dispersion at a critical frequency, and the particles diffuse significantly faster in the direction of oscillation than those undergoing passive Stokes-Einstein-Sutherland diffusion. Theoretical predictions for the effective diffusivity of the particles as a function of trap stiffness and oscillation frequency are developed using generalized Taylor dispersion theory and Brownian dynamics simulations. Both theory and simulation demonstrate excellent agreement with the experiments, and reveal a slingshot mechanism that predicts a significant enhancement of colloidal diffusion in dynamic external fields." @default.
- W4313591256 created "2023-01-06" @default.
- W4313591256 creator A5041607321 @default.
- W4313591256 creator A5050765513 @default.
- W4313591256 date "2023-01-04" @default.
- W4313591256 modified "2023-10-01" @default.
- W4313591256 title "Enhanced dispersion in an oscillating array of harmonic traps" @default.
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- W4313591256 doi "https://doi.org/10.1103/physreve.107.014601" @default.
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