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The interaction of a walking droplet and a submerged pillar: From scattering to the logarithmic spiral.

Author(s): Harris, Daniel M; Brun, P-T; Damiano, Adam; Faria, Luiz M; Bush, John WM

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Abstract: Millimetric droplets may walk across the surface of a vibrating fluid bath, propelled forward by their own guiding or "pilot" wave field. We here consider the interaction of such walking droplets with a submerged circular pillar. While simple scattering events are the norm, as the waves become more pronounced, the drop departs the pillar along a path corresponding to a logarithmic spiral. The system behavior is explored both experimentally and theoretically, using a reduced numerical model in which the pillar is simply treated as a region of decreased wave speed. A trajectory equation valid in the limit of weak droplet acceleration is used to infer an effective force due to the presence of the pillar, which is found to be a lift force proportional to the product of the drop's walking speed and its instantaneous angular speed around the post. This system presents a macroscopic example of pilot-wave-mediated forces giving rise to apparent action at a distance.
Publication Date: Sep-2018
Electronic Publication Date: 14-Sep-2018
Citation: Harris, Daniel M, Brun, P-T, Damiano, Adam, Faria, Luiz M, Bush, John WM. (2018). The interaction of a walking droplet and a submerged pillar: From scattering to the logarithmic spiral.. Chaos (Woodbury, N.Y.), 28 (9), 096105 - ?. doi:10.1063/1.5031022
DOI: doi:10.1063/1.5031022
ISSN: 1054-1500
EISSN: 1089-7682
Pages: 096105 - ?
Language: eng
Type of Material: Journal Article
Journal/Proceeding Title: Chaos (Woodbury, N.Y.)
Version: Final published version. Article is made available in OAR by the publisher's permission or policy.



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