Martínez Pedro J, Chacón Ricardo
Departamento de Física Aplicada, E.I.N.A., Universidad de Zaragoza, E-50018 Zaragoza, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jun;87(6):062114. doi: 10.1103/PhysRevE.87.062114. Epub 2013 Jun 10.
We show that directed ratchet transport of a driven overdamped Brownian particle subjected to a spatially periodic and symmetric potential can be reliably controlled by tailoring a biharmonic temporal force, in coherence with the degree-of-symmetry-breaking mechanism. We demonstrate that the effect of finite temperature on the purely deterministic ratchet scenario can be understood as an effective noise-induced change of the potential barrier which is in turn controlled by the degree-of-symmetry-breaking mechanism. Remarkably, we find that the same universal scenario holds for any symmetric periodic potential, while optimal directed ratchet transport occurs when the impulse transmitted (spatial integral over a half period) by the symmetric spatial force is maximum.
我们表明,受空间周期性和对称势作用的驱动过阻尼布朗粒子的定向棘轮输运,可以通过调整双谐波时间力来可靠地控制,这与对称性破缺机制相一致。我们证明,有限温度对纯确定性棘轮情形的影响可以理解为势垒的有效噪声诱导变化,而这又由对称性破缺机制控制。值得注意的是,我们发现对于任何对称周期势,相同的通用情形都成立,而当对称空间力传递的冲量(半个周期上的空间积分)最大时,会出现最优的定向棘轮输运。