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- W2795367040 abstract "Abstract In this paper, we investigate the role of correlated multiplicative ( κ 1 ) and additive ( κ 2 ) noises in a modified energy conversion depot model, at which it is added a linear term in the conversion of internal energy of active Brownian particles (ABPs). The linear term ( a 1 ≠ 0 . 0 ) in energy conversion model breaks the symmetry of the potential to generate motion of the ABPs with a net transport velocity. Adopt a nonlinear Langevin approach, the transport properties of the ABPs have been discussed, and our results show that: (i) the transport velocity 〈 υ 1 〉 of the ABPs are always positive whether the correlation intensity λ = 0 . 0 or not; (ii) for a small value of the multiplicative noise intensity κ 1 , the variation of 〈 υ 1 〉 with λ shows a minimum, there exists an optimal value of the correlation intensity λ at which the 〈 υ 1 〉 of the ABPs is minimized. But for a large value of κ 1 , the 〈 υ 1 〉 monotonically decreases; (iii) the transport velocity 〈 υ 1 〉 increases with the increase of the κ 1 or κ 2 , i.e., the multiplicative or additive noise can facilitate the transport of the ABPs; and (iv) the effective diffusion increases with the increase of a 1 , namely, the linear term in modified energy conversion model of the ABPs can enhance the diffusion of the ABPs." @default.
- W2795367040 created "2018-04-13" @default.
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- W2795367040 date "2018-09-01" @default.
- W2795367040 modified "2023-10-01" @default.
- W2795367040 title "Transport properties of active Brownian particles in a modified energy-depot model driven by correlated noises" @default.
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- W2795367040 doi "https://doi.org/10.1016/j.physa.2018.03.065" @default.
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