Faculty of Science, Kunming University of Science and Technology, Kunming 650093, China.
Chaos. 2012 Sep;22(3):033125. doi: 10.1063/1.4745853.
Transport and diffusion of Brownian particles in a symmetrical periodic potential were investigated for both overdamped and underdamped cases, where the ratchet potential is driven by an external unbiased time periodic force and correlation between thermal and potential fluctuations. It is shown that the correlation between two noises breaks the symmetry of the potential to generate motion of the Brownian particles in particular direction, and the current can reverse its direction by changing the sign of the noise correlation. For the overdamped case, the systemic parameters only induce the directed current, and the noise correlation suppresses the diffusion of the overdamped Brownian particles. However for the underdamped case, the current reverses its direction multiple times with increasing the systemic parameters, i.e., the multiple current reversal is observed, and the noise negative correlation suppresses the diffusion of the underdamped Brownian particles, while the noise positive correlation enhances it.
布朗粒子在对称周期势中的输运和扩散在过阻尼和欠阻尼两种情况下都进行了研究,其中棘轮势由外部无偏时变力驱动以及热涨落和势涨落之间的相关性。结果表明,两种噪声之间的相关性打破了势的对称性,从而使布朗粒子在特定方向上运动,通过改变噪声相关性的符号可以使电流反向。对于过阻尼情况,系统参数仅诱导定向电流,而噪声相关性会抑制过阻尼布朗粒子的扩散。然而,对于欠阻尼情况,随着系统参数的增加,电流会多次反向,即观察到多次电流反转,噪声负相关性会抑制欠阻尼布朗粒子的扩散,而噪声正相关性会增强它。