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Ratchet Effects in Active Matter Systems

机译:主动物质系统中的棘轮效果

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Ratchet effects can arise for single or collectively interacting Brownian particles on an asymmetric substrate when a net dc transport is produced by an externally applied ac driving force or by periodically flashing the substrate. Recently, a new class of active ratchet systems that do not require the application of external driving has been realized through the use of active matter; they are self-propelled units that can be biological or nonbiological in nature. When active materials such as swimming bacteria interact with an asymmetric substrate, a net dc directed motion can arise even without external driving, opening a wealth of possibilities such as sorting, cargo transport, or micromachine construction. We review the current status of active matter ratchets for swimming bacteria, cells, active colloids, and swarming models, focusing on the role of particle-substrate interactions. We describe ratchet reversals produced by collective effects and the use of active ratchets to transport passive particles. We discuss future directions including deformable substrates or particles, the role of different swimming modes, varied particle–particle interactions, and nondissipative effects.
机译:当通过外部施加的AC驱动力或通过周期性地闪烁基板时,可以在不对称基板上进行单个或集体相互作用的褐色颗粒来出现棘轮效果。最近,通过使用主动物质,已经实现了一类不需要应用外部驱动的活动棘轮系统;它们是自我推进的单位,可以是生物或非生物学的自然界。当诸如游泳细菌的活性材料与不对称基板相互作用时,即使没有外部驾驶,也可以出现净直流定向运动,这些可能性是分类,货物运输或微机械结构的大量可能性。我们审查了用于游泳细菌,细胞,活性胶体和蜂拥模型的活性物质棘轮的当前状态,重点介绍粒子衬底相互作用的作用。我们描述了通过集体效果产生的棘轮逆转,并使用有源棘轮来运输被动颗粒。我们讨论了未来的方向,包括可变形的基材或颗粒,不同游泳模式的作用,不同的颗粒颗粒相互作用和不良效应。

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