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首页> 外文期刊>Journal of Fluid Mechanics >Faraday instability and subthreshold Faraday waves: surface waves emitted by walkers
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Faraday instability and subthreshold Faraday waves: surface waves emitted by walkers

机译:法拉第不稳定性和亚阈值法拉第波:步行者发出的表面波

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摘要

A walker is a fluid entity comprising a bouncing droplet coupled to the waves that it generates at the surface of a vibrated bath. Thanks to this coupling, walkers exhibit a series of wave–particle features formerly thought to be exclusive to the quantum realm. In this paper, we derive a model of the Faraday surface waves generated by an impact upon a vertically vibrated liquid surface. We then particularise this theoretical framework to the case of forcing slightly below the Faraday instability threshold. Among others, this theory yields a rationale for the cosine dependence of the wave amplitude to the phase shift between impact and forcing, as well as the characteristic time scale and length scale of viscous damping. The theory is validated with experiments of bead impact on a vibrated bath. We finally discuss implications of these results for the analogy between walkers and quantum particles.
机译:步行者是一种流体实体,其包括耦合到它在振动浴的表面产生的波的波动液滴。 由于这种耦合,步行者展示了一系列的波粒子,以前认为是量子境界的独家。 在本文中,我们推出了由垂直振动液体表面产生的冲击产生的法拉第表面波的模型。 然后,我们将这种理论框架特殊于略低于法拉第不稳定性阈值的情况。 其中,该理论产生了对波振幅与冲击和迫使之间的相移的余弦依赖性的基本原理,以及粘性阻尼的特征时间尺度和长度等级。 该理论验证了对振动浴的珠子撞击的实验。 我们终于讨论了这些结果对步行者和量子粒子之间的类比的影响。

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