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- W2001378935 abstract "Rectified transport of active ellipsoidal particles is numerically investigated in a two-dimensional asymmetric potential. The out-of-equilibrium condition for the active particle is an intrinsic property, which can break thermodynamical equilibrium and induce the directed transport. It is found that the perfect sphere particle can facilitate the rectification, while the needlelike particle destroys the directed transport. There exist optimized values of the parameters (the self-propelled velocity, the torque acting on the body) at which the average velocity takes its maximal value. For the ellipsoidal particle with not large asymmetric parameter, the average velocity decreases with increasing the rotational diffusion rate, while for the needlelike particle (very large asymmetric parameter), the average velocity is a peaked function of the rotational diffusion rate. By introducing a finite load, particles with different shapes (or different self-propelled velocities) will move to the opposite directions, which is able to separate particles of different shapes (or different self-propelled velocities)." @default.
- W2001378935 created "2016-06-24" @default.
- W2001378935 creator A5015017965 @default.
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- W2001378935 date "2014-03-06" @default.
- W2001378935 modified "2023-09-25" @default.
- W2001378935 title "Transport of active ellipsoidal particles in ratchet potentials" @default.
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- W2001378935 doi "https://doi.org/10.1063/1.4867283" @default.
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