Reichhardt C, Olson Reichhardt C J
Center for Nonlinear Studies and Theoretical Division, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Jan;73(1 Pt 1):011102. doi: 10.1103/PhysRevE.73.011102. Epub 2006 Jan 12.
We show in simulations that overdamped interacting particles in two dimensions with a randomly disordered substrate can exhibit novel nonequilibrium transport phenomena including a transverse ratchet effect, where a combined dc drive and circular ac drive produce a drift velocity in the direction transverse to the applied dc drive. The random disorder does not break any global symmetry; however, in two dimensions, symmetry breaking occurs due to the chirality of the circular drive. In addition to inducing the transverse ratchet effect, increasing the ac amplitude also strongly affects the longitudinal velocity response and can produce what we term an overshoot effect where the longitudinal dc velocity is higher in the presence of the ac drive than it would be for a dc drive alone. We also find a dynamical reordering transition upon increasing the ac amplitude. In the absence of a dc drive, it is possible to obtain a ratchet effect when the combined ac drives produce particle orbits that break a reflection symmetry. In this case, as the ac amplitude increases, current reversals can occur. These effects may be observable for vortices in type-II superconductors as well as for colloids interacting with random substrates.
我们在模拟中表明,二维空间中与随机无序衬底相互作用的过阻尼粒子可展现出新颖的非平衡输运现象,包括横向棘轮效应,即直流驱动与圆形交流驱动相结合会在垂直于外加直流驱动的方向上产生漂移速度。随机无序并未打破任何全局对称性;然而,在二维空间中,由于圆形驱动的手征性会出现对称性破缺。除了诱发横向棘轮效应外,增大交流振幅还会强烈影响纵向速度响应,并能产生我们所称的过冲效应,即存在交流驱动时纵向直流速度高于仅施加直流驱动时的速度。我们还发现,增大交流振幅时会发生动态重排转变。在没有直流驱动的情况下,当组合交流驱动产生打破反射对称性的粒子轨道时,有可能获得棘轮效应。在这种情况下,随着交流振幅增大,电流可能会反转。这些效应在II型超导体中的涡旋以及与随机衬底相互作用的胶体中可能是可观测的。