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Ratchets in homogeneous extended systems: internal modes and the role of noise

机译:同质扩展系统中的棘轮:内部模式和噪声的作用

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We revisit the issue of directed motion induced by zero average forces in extended systems driven by ac forces. It has been shown recently that a directed energy current appears if the ac external force, f(t), breaks the symmetry f(t) = —f(t + T/2), T being the period, if topological solitons (kinks) existed in the system. In this work, a collective coordinate approach allows us to identify the mechanism through which the width oscillation drives the kink and its relation with the mathematical symmetry conditions. Furthermore, our theory predicts, and numerical simulations confirm, that the direction of motion depends on the initial phase of the driving, while the system behaves in a ratchet-like fashion if averaging over initial conditions. Finally, the presence of noise overimposed to the ac driving does not destroy the directed motion; on the contrary, it gives rise to an activation process that increases the velocity of the motion. We conjecture that this could be a signature of resonant phenomena at larger noises.
机译:我们重温由AC力量驱动扩展系统引起的零个平均部队定向运动的问题。最近已经表明,定向能量电流出现如果AC外力,F(T),断裂对称性F(T)= -f(T + T / 2),T是周期中,如果拓扑孤子(扭结在系统中)的存在。在这项工作中,集体坐标方法使我们能够识别机制,通过宽度振荡驱动扭结及其与数学对称条件的关系。此外,我们的理论预测,和数值模拟确认,该运动方向依赖于驱动的初始阶段,同时系统的行为以类似棘轮的方式,如果平均在初始条件。最后,overimposed到交流驱动不破坏定向运动噪声的存在;相反,它产生了一激活过程,增加的运动的速度。我们猜想,这可能在较大的噪音是共振现象的签名。

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