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Acoustic Studies for Alpha Background Rejection in Dark Matter Bubble Chamber Detectors

机译:暗物质泡泡室探测器中α背景抑制的声学研究

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COUPP (Chicagoland Observatory for Underground Particle Physics) is an experiment with bubble chambers able to detect dark matter directly either with Spin-Dependent or with Spin-Independent interactions. The target material is a superheated liquid (usually CF3I) that can be bubble nucleated due to nuclear recoils produced by elastic collisions of dark matter particles. The bubble growth inside the chamber is accompanied with an acoustic signature. The acoustic technique has been successfully used to have a good alpha discrimination (about 99%). In this paper, we present different studies and results related with the characterization of the acoustic properties of the detector and the different phenomena involved in the acoustic measurements of the bubble growth, such as sound generation, sound transmission and optimization of piezoelectric transducers.
机译:Coupp(用于地下颗粒物理学的芝加哥天文台)是一种实验,泡沫室能够直接用旋转依赖性或与旋染相互作用直接检测暗物质。靶材料是一种过热的液体(通常是CF3i),其由于暗物质颗粒的弹性碰撞产生的核反过来,可以是泡沫的核心。腔室内的气泡生长伴随着声学签名。声学技术已成功用于具有良好的α歧视(约99%)。在本文中,我们呈现不同的研究和结果与检测器的声学特性的表征相关,以及泡沫生长的声学测量中涉及的不同现象,例如声音产生,声音传输和压电换能器的优化。

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