Synchronization of wave-propelled capillary spinners

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Barotta, Jack-William, Pucci, Giuseppe, Silver, Eli, Hooshanginejad, Alireza, Harris, Daniel M.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866913709046104064
author Barotta, Jack-William
Pucci, Giuseppe
Silver, Eli
Hooshanginejad, Alireza
Harris, Daniel M.
author_facet Barotta, Jack-William
Pucci, Giuseppe
Silver, Eli
Hooshanginejad, Alireza
Harris, Daniel M.
contents When a millimetric body is placed atop a vibrating liquid bath, the relative motion between the object and interface generates outward propagating waves with an associated momentum flux. Prior work has shown that isolated chiral objects, referred to as spinners, can thus rotate steadily in response to their self-generated wavefield. Here, we consider the case of two co-chiral spinners held at a fixed spacing from one another but otherwise free to interact hydrodynamically through their shared fluid substrate. Two identical spinners are able to synchronize their rotation, with their equilibrium phase difference sensitive to their spacing and initial conditions, and even cease to rotate when the coupling becomes sufficiently strong. Non-identical spinners can also find synchrony provided their intrinsic differences are not too disparate. A hydrodynamic wave model of the spinner interaction is proposed, recovering all salient features of the experiment. In all cases, the spatially periodic nature of the capillary wave coupling is directly reflected in the emergent equilibrium behaviors.
format Preprint
id arxiv_https___arxiv_org_abs_2409_06652
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Synchronization of wave-propelled capillary spinners
Barotta, Jack-William
Pucci, Giuseppe
Silver, Eli
Hooshanginejad, Alireza
Harris, Daniel M.
Soft Condensed Matter
Fluid Dynamics
When a millimetric body is placed atop a vibrating liquid bath, the relative motion between the object and interface generates outward propagating waves with an associated momentum flux. Prior work has shown that isolated chiral objects, referred to as spinners, can thus rotate steadily in response to their self-generated wavefield. Here, we consider the case of two co-chiral spinners held at a fixed spacing from one another but otherwise free to interact hydrodynamically through their shared fluid substrate. Two identical spinners are able to synchronize their rotation, with their equilibrium phase difference sensitive to their spacing and initial conditions, and even cease to rotate when the coupling becomes sufficiently strong. Non-identical spinners can also find synchrony provided their intrinsic differences are not too disparate. A hydrodynamic wave model of the spinner interaction is proposed, recovering all salient features of the experiment. In all cases, the spatially periodic nature of the capillary wave coupling is directly reflected in the emergent equilibrium behaviors.
title Synchronization of wave-propelled capillary spinners
topic Soft Condensed Matter
Fluid Dynamics
url https://arxiv.org/abs/2409.06652