Acoustic detection potential of single minimum ionizing particles in viscous liquids
Abstract
An ionizing particle passing through a liquid generates acoustic signals via local heat deposition. We delve into modeling such acoustic signals in the case of a single particle that interacts with the liquid electromagnetically in a generic way. We present a systematic way of introducing corrections due to viscosity using a perturbative approach so that our solution is valid at large distances from the interaction point. A computational simulation framework to perform the calculations described is also provided. The methodology developed is then applied to predict the acoustic signal of relativistic muons in various liquids as a toy model.
Keywords
Cite
@article{arxiv.2208.12312,
title = {Acoustic detection potential of single minimum ionizing particles in viscous liquids},
author = {Panagiotis Oikonomou and Laura Manenti and Isaac Sarnoff and Francesco Arneodo},
journal= {arXiv preprint arXiv:2208.12312},
year = {2022}
}
Comments
12 pages, 8 figures, Submitted for Publication, Calculations and Code can be found in: https://github.com/nyuad-astroparticle/LXe-Phonon