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Two-dimensional Transport Model of Coupled Brownian Particles Driven by Biharmonic Forces and Constant Forces

机译:双调和恒力驱动的布朗粒子耦合二维输运模型

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A directed transport model of coupled Brownian particles in a two-dimensional potential is established. In this model, the system of Brownian particles is driven by biharmonic forces and constant forces. By numerical simulation, the cooperative transport behaviours of the system are investigated. The results show that the average velocity of the system is significantly independent of the frequencies and intensities of the harmonic forces, the barrier height of the ratchet potential, coupling strength and noise intensity. The average velocity increases monotonically with increasing the intensities of the harmonic forces, and can reach some maximum values when the two frequencies are equal. In addition, the average velocity presents stochastic resonance and generalized resonance for noise intensity, coupling strength and the barrier height of the ratchet potential. Moreover, when a constant force is exerted on the ratchet potential direction, it will promote the directed transport of the system. But, when on the non-ratchet potential direction, the transport will not be affected.
机译:建立了二维势中耦合布朗粒子的有向输运模型。在此模型中,布朗粒子系统是由双谐波力和恒力驱动的。通过数值模拟,研究了系统的协同运输行为。结果表明,系统的平均速度与谐波力的频率和强度,棘轮电位的势垒高度,耦合强度和噪声强度显着无关。平均速度随着谐波力强度的增加而单调增加,并且在两个频率相等时可以达到一些最大值。此外,平均速度还表现出随机共振和广义共振,涉及噪声强度,耦合强度和棘轮电位的势垒高度。而且,当在棘轮电位方向上施加恒定力时,它将促进系统的定向运输。但是,在非棘轮电位方向上,运输不会受到影响。

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