论文标题
粘性液体中单个最小电离颗粒的声学检测潜力
Acoustic detection potential of single minimum ionizing particles in viscous liquids
论文作者
论文摘要
通过液体的电离粒子通过局部热沉积产生声信号。在单个粒子以通用方式与液体相互作用的情况下,我们深入研究了这种声学信号。我们提出了一种系统的方法,可以使用扰动方法引入校正,以便我们的解决方案在距交互点大距离处有效。还提供了用于执行所述计算的计算模拟框架。然后,将开发的方法用于预测各种液体中相对论muons的声学信号作为玩具模型。
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.