A Phase transition in acoustic propagation in 2D random liquid media
Classical Physics
2009-10-31 v3 Condensed Matter
Abstract
Acoustic wave propagation in liquid media containing many parallel air-filled cylinders is considered. A self-consistent method is used to compute rigorously the propagation, incorporating all orders of multiple scattering. It is shown that under proper conditions, multiple scattering leads to a peculiar phase transition in acoustic propagation. When the phase transition occurs, a collective behavior of the cylinders appears and the acoustic waves are confined in a region of space in the neighborhood of the transmission source. A novel phase diagram is used to describe such phase transition. Originally submitted on April 6, 99.
Cite
@article{arxiv.physics/9904005,
title = {A Phase transition in acoustic propagation in 2D random liquid media},
author = {Emile Hoskinson and Zhen Ye},
journal= {arXiv preprint arXiv:physics/9904005},
year = {2009}
}
Comments
5 pages, 5 color figures