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Effects of the thermodynamic conditions on the acoustic signature of bubble nucleation in superheated liquids used in dark matter search experiments

机译:热力学条件对暗物质搜索实验中使用过热液体泡沫成核声学特征的影响

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摘要

In the framework of the search for dark matter in the form of WIMPs using superheated liquids, a study is conducted to establish a computational procedure aimed at determining how the thermodynamic conditions kept inside a particle detector affect the acoustic signal produced by bubble nucleation. It is found that the acoustic energy injected into the liquid by the growing vapour bubble increases as the liquid pressure is decreased and the superheat degree is increased, the former effect being crucial for the generation of a well-intelligible signal. A good agreement is met between the results of the present study and some experimental data available in the literature for the amplitude of the acoustic signal. Additionally, the higher loudness of the alpha-decay events compared with those arising from neutron-induced nuclear recoils is described in terms of multiple nucleations.
机译:在使用过热液体的WIMPS的形式寻找暗物质的框架中,进行研究以建立旨在确定在粒子探测器内部的热力学条件如何影响泡沫成核产生的声学信号的计算过程。 结果发现,随着液体压力降低并且过热程度增加,由于液体压力增加,前一种效果对于产生良好可理解的信号至关重要,因此通过生长的蒸汽气泡注入液体的声能增加。 在本研究的结果和文献中可用的一些实验数据在声学信号的幅度中提供了良好的协议。 另外,与来自中子诱导的核反冲产生的那些相比,α衰减事件的较高响度在多个核方面描述。

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