论文标题
超级流体氦的签名和检测前景
Signatures and Detection Prospects for sub-GeV Dark Matter with Superfluid Helium
论文作者
论文摘要
我们探讨了使用超流体氦直接检测子GEV暗物质(DM)的可能性。我们讨论了由入射暗物质粒子在氦核上散射产生的相关现象学。该质量范围内的DM不是直接令人兴奋的准粒子,而是会与单个He原子相互作用,从而触发原子级联反应,最终还包括排放和准粒子的热化。我们详细介绍了建模这些过程并确定准粒子的磁通所需的分析框架。我们提出了一种使用现代力敏感器件(例如纳米机电系统(NEMS)振荡器)检测这种通量的新方法,并使用此类传感器得出了通用子GEV DM检测实验的灵敏度投影。
We explore the possibility of using superfluid helium for direct detection of sub-GeV dark matter (DM). We discuss the relevant phenomenology resulting from the scattering of an incident dark matter particle on a Helium nucleus. Rather than directly exciting quasi-particles, DM in this mass range will interact with a single He atom, triggering an atomic cascade which eventually also includes emission and thermalization of quasi-particles. We present in detail the analytical framework needed for modeling these processes and determining the resulting flux of quasi-particles. We propose a novel method for detecting this flux with modern force-sensitive devices, such as nanoelectro-mechanical system (NEMS) oscillators, and derive the sensitivity projections for a generic sub-GeV DM detection experiment using such sensors.