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- W2808947768 abstract "Using molecular dynamics simulations, we study particle-transport in a system of interacting colloidal particles on a ring, where the system is driven by a time-dependent external potential, moving along the ring. We consider two driving protocols: (i) the external potential barrier moves with a uniform velocity $v$ along the ring, and (ii) it moves in discrete jumps with jump-length $l$ and waiting time $tau$ with an effective velocity $v=l/tau$. The time-averaged (dc) particle current, which always remains positive in case (i), interestingly reverses its direction in case (ii) upon tuning the particle-number density $rho_0$ and the effective barrier velocity $v$. We also find a scaling form for the current in terms of number density, barrier velocity, barrier height and temperature of the system." @default.
- W2808947768 created "2018-06-29" @default.
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- W2808947768 date "2018-11-28" @default.
- W2808947768 modified "2023-10-16" @default.
- W2808947768 title "Current reversal in interacting colloids under time-periodic drive" @default.
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- W2808947768 doi "https://doi.org/10.1103/physreve.98.052142" @default.
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