da Silva Rogério M, de Souza Silva Clécio C, Coutinho Sérgio
Departamento de Física, Universidade Federal de Pernambuco, 50670-901 Recife, Pernambuco, Brazil.
Phys Rev E Stat Nonlin Soft Matter Phys. 2008 Dec;78(6 Pt 1):061131. doi: 10.1103/PhysRevE.78.061131. Epub 2008 Dec 29.
The transport of interacting Brownian particles in a periodic asymmetric (ratchet) substrate is studied numerically. In a zero-temperature regime, the system behaves as a reversible step motor, undergoing multiple sign reversals of the particle current as any of the following parameters are varied: the pinning potential parameters, the particle occupation number, and the excitation amplitude. The reversals are induced by successive changes in the symmetry of the effective ratchet potential produced by the substrate and the fraction of particles which are effectively pinned. At high temperatures and low frequencies, thermal noise assists delocalization of the pinned particles, rendering the system to recover net motion along the gentler direction of the substrate potential. The joint effect of high temperature and high frequency, on the other hand, induces an additional current inversion, this time favoring motion along the direction where the ratchet potential is steeper. The dependence of these properties on the ratchet parameters and particle density is analyzed in detail.
对相互作用的布朗粒子在周期性非对称(棘轮)衬底中的输运进行了数值研究。在零温度 regime 下,系统表现为一个可逆步进电机,当以下任何一个参数变化时,粒子电流会经历多次符号反转:钉扎势参数、粒子占据数和激发幅度。这些反转是由衬底产生的有效棘轮势的对称性以及有效钉扎的粒子分数的连续变化引起的。在高温和低频下,热噪声有助于被钉扎粒子的离域,使系统恢复沿衬底势较平缓方向的净运动。另一方面,高温和高频的联合效应会引起额外的电流反转,这次有利于沿棘轮势较陡方向的运动。详细分析了这些特性对棘轮参数和粒子密度的依赖性。