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    Interaction of walkers with a standing Faraday wave

    Loïc Tadrist1,* and Tristan Gilet2

    • 1Aix-Marseille Université, CNRS, ISM, Marseille, France
    • 2Microfluidics Lab, Aerospace and Mechanical Engineering, University of Liège, Allée de la Découverte 9, 4000 Liège, Belgium

    • *Contact author: loic.tadrist@univ-amu.fr

    Phys. Rev. E 113, 055104 – Published 8 May, 2026

    DOI: https://doi.org/10.1103/tqyd-hs8b

    Abstract

    Walkers (i.e., bouncing droplets coupled to a local Faraday wave) are sent on an orthogonal standing wave. The trajectories of successive walkers form a straight-propagating beam toward the wave that splits into three distinct paths during the interaction with the wave. At the end of the interaction, walkers' trajectories split again and are deviated into three main directions. The walkers' trajectories show sensitivity to parameters and initial conditions but remain predictable in some regions of the parameter space. The dependence of the statistical distribution of deviations on the wave amplitude markedly differs from the prediction of quantum mechanics for a particle interacting with a standing electromagnetic wave.

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