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Main Authors: Ganesh, Subramaniam Chembai, Rosenberg, Jessica S., Morris, Jeffrey F., Koplik, Joel, Maldarelli, Charles
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2501.10955
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author Ganesh, Subramaniam Chembai
Rosenberg, Jessica S.
Morris, Jeffrey F.
Koplik, Joel
Maldarelli, Charles
author_facet Ganesh, Subramaniam Chembai
Rosenberg, Jessica S.
Morris, Jeffrey F.
Koplik, Joel
Maldarelli, Charles
contents We analyze the interaction between a self-diffusiophoretic spherical Janus motor and an inert spherical cargo particle in an axisymmetric configuration in the Stokes regime. To study the different configurations of the two spheres and their motions, we develop an analog to the twin multipole approach to numerically determine the axisymmetric stream function for the flow field. We verify the validity and accuracy of this approach using existing literature and COMSOL Multiphysics. We study the effects of the size of the Janus cap, the relative ratio of sizes of the two spheres, and their separation distance on their interactions. For the case of a stationary cargo, we identify the existence of a distinct regime where the Janus motor hovers at a finite separation distance from the cargo and summarize the results using a phase diagram. In the presence of a freely moving cargo, we analyze the steady terminal velocities of the Janus motor and the cargo to identify distinct conditions at which the two spheres can translate with equal velocities while maintaining a finite separation distance.
format Preprint
id arxiv_https___arxiv_org_abs_2501_10955
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Axisymmetric Pushing of a Spherical Cargo using an Active Spherical Janus Motor
Ganesh, Subramaniam Chembai
Rosenberg, Jessica S.
Morris, Jeffrey F.
Koplik, Joel
Maldarelli, Charles
Fluid Dynamics
Soft Condensed Matter
We analyze the interaction between a self-diffusiophoretic spherical Janus motor and an inert spherical cargo particle in an axisymmetric configuration in the Stokes regime. To study the different configurations of the two spheres and their motions, we develop an analog to the twin multipole approach to numerically determine the axisymmetric stream function for the flow field. We verify the validity and accuracy of this approach using existing literature and COMSOL Multiphysics. We study the effects of the size of the Janus cap, the relative ratio of sizes of the two spheres, and their separation distance on their interactions. For the case of a stationary cargo, we identify the existence of a distinct regime where the Janus motor hovers at a finite separation distance from the cargo and summarize the results using a phase diagram. In the presence of a freely moving cargo, we analyze the steady terminal velocities of the Janus motor and the cargo to identify distinct conditions at which the two spheres can translate with equal velocities while maintaining a finite separation distance.
title Axisymmetric Pushing of a Spherical Cargo using an Active Spherical Janus Motor
topic Fluid Dynamics
Soft Condensed Matter
url https://arxiv.org/abs/2501.10955