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A hydrodynamic analog of Friedel oscillations

机译:Friedel振荡的流体动力学模拟

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We present a macroscopic analog of an open quantum system, achieved with a classical pilot-wave system. Friedel oscillations are the angstrom-scale statistical signature of an impurity on a metal surface, concentric circular modulations in the probability density function of the surrounding electron sea. We consider a millimetric drop, propelled by its own wave field along the surface of a vibrating liquid bath, interacting with a submerged circular well. An ensemble of drop trajectories displays a statistical signature in the vicinity of the well that is strikingly similar to Friedel oscillations. The droplet trajectories reveal the dynamical roots of the emergent statistics. Our study elucidates a new mechanism for emergent quantum-like statistics in pilot-wave hydrodynamics and so suggests new directions for the nascent field of hydrodynamic quantum analogs.
机译:我们介绍了一种开放量子系统的宏观模拟,通过经典的先导波系统实现。 Friedel振荡是金属表面上的杂质的夜总统计签名,在周围的电子大海的概率密度函数中的同心圆形调制。我们考虑沿着振动液体浴表面的自身波田推进的毫米下降,与浸没的圆形井相互作用。丢弃轨迹的集合在井附近显示统计签名,这与Friedel振荡相似。液滴轨迹揭示了紧急统计的动态根源。我们的研究阐明了试验波流体动力学中的突出量子样统计数据的新机制,提出了新的流体动力量子类似物的新方向。

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