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移动波源通过其发射反作用自吸引到自旋本征态。

Self-attraction into spinning eigenstates of a mobile wave source by its emission back-reaction.

作者信息

Labousse Matthieu, Perrard Stéphane, Couder Yves, Fort Emmanuel

机构信息

Institut Langevin, ESPCI Paris, PSL Research University, CNRS, 1 rue Jussieu, 75005 Paris, France.

Matière et Systèmes Complexes, Université Paris Diderot, CNRS, Sorbonne Paris Cité, Bâtiment Condorcet, 10 rue Alice Domon et Léonie Duquet, 75013 Paris, France.

出版信息

Phys Rev E. 2016 Oct;94(4-1):042224. doi: 10.1103/PhysRevE.94.042224. Epub 2016 Oct 27.

Abstract

The back-reaction of a radiated wave on the emitting source is a general problem. In the most general case, back-reaction on moving wave sources depends on their whole history. Here we study a model system in which a pointlike source is piloted by its own memory-endowed wave field. Such a situation is implemented experimentally using a self-propelled droplet bouncing on a vertically vibrated liquid bath and driven by the waves it generates along its trajectory. The droplet and its associated wave field form an entity having an intrinsic dual particle-wave character. The wave field encodes in its interference structure the past trajectory of the droplet. In the present article we show that this object can self-organize into a spinning state in which the droplet possesses an orbiting motion without any external interaction. The rotation is driven by the wave-mediated attractive interaction of the droplet with its own past. The resulting "memory force" is investigated and characterized experimentally, numerically, and theoretically. Orbiting with a radius of curvature close to half a wavelength is shown to be a memory-induced dynamical attractor for the droplet's motion.

摘要

辐射波对发射源的反作用是一个普遍问题。在最一般的情况下,对移动波源的反作用取决于它们的整个历史。在这里,我们研究一个模型系统,其中点状源由其自身具有记忆功能的波场引导。这种情况通过一个在垂直振动的液体浴上弹跳的自推进液滴来实验实现,该液滴由其沿轨迹产生的波驱动。液滴及其相关的波场形成一个具有内在双粒子 - 波特性的实体。波场在其干涉结构中编码了液滴的过去轨迹。在本文中,我们表明这个物体可以自组织成一种旋转状态,其中液滴在没有任何外部相互作用的情况下进行轨道运动。这种旋转是由液滴与其自身过去的波介导的吸引相互作用驱动的。对由此产生的“记忆力”进行了实验、数值和理论研究与表征。曲率半径接近半波长的轨道被证明是液滴运动的记忆诱导动态吸引子。

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