Acoustically mediated long-range interaction among multiple spherical particles exposed to a plane standing wave
Abstract
In this work, we study the acoustically mediated interaction forces among multiple well-separated spherical particles trapped in the same node or antinode plane of a standing wave. An analytical expression of the acoustic interaction force is derived, which is accurate even for the particles beyond the Rayleigh limit. Interestingly, the multi-particle system can be decomposed into a series of independent two-particle systems described by pairwise interactions. Each pairwise interaction is a long-range interaction, as characterized by a soft oscillatory attenuation (at the power exponent of n=-1 or -2). The vector additivity of the acoustic interaction force, which is not well expected considering the nonlinear nature of the acoustic radiation force, is greatly useful for exploring a system consisting of a large number of particles. The capability of self-organizing a big particle cluster can be anticipated through such acoustically controllable long-range interaction.
Keywords
Cite
@article{arxiv.1607.04011,
title = {Acoustically mediated long-range interaction among multiple spherical particles exposed to a plane standing wave},
author = {Shenwei Zhang and Chunyin Qiu and Mudi Wang and Manzhu Ke and Zhengyou Liu},
journal= {arXiv preprint arXiv:1607.04011},
year = {2016}
}
Comments
7 figures & 20 pages