论文标题
暗物质干涉法
Dark Matter Interferometry
论文作者
论文摘要
下一代的超轻暗物质(DM)直接检测实验可以证实子-EV玻色子作为DM的主要来源,它将具有在各种地面位置运行的多个检测器。由于超轻DM的波形性质,空间分离的检测器将每个测量独特的DM相。当实验之间的分离与DM相干长度相当时,空间变化的相包含在单个检测器上可访问的信息之外的信息。我们引入了一种形式主义来提取此信息,该信息直接在DM波上执行干涉法。特别是,我们开发了一个基于似然的框架,该框架结合了来自多个实验的数据,以限制有关DM相位空间分布的定向信息。我们表明,多个检测器中的信号受波浪状DM独有的每日调制效果。利用每日调制,我们说明,在初始发现的几天内,作用于统一的多个检测器可以定位DM速度分布的定向参数,例如太阳速度对次级准确性的方向或推定的冷DM的方向,以便在距离阶级级别上。我们概述了如何使用谐振腔(例如ADMX或Haystac)或准危机(例如Abracadabra或DM-Radio)读数来优化多个检测器的位置,以对完整的3维DM速度分布具有最大的敏感性。
The next generation of ultralight dark matter (DM) direct detection experiments, which could confirm sub-eV bosons as the dominant source of DM, will feature multiple detectors operating at various terrestrial locations. As a result of the wave-like nature of ultralight DM, spatially separated detectors will each measure a unique DM phase. When the separation between experiments is comparable to the DM coherence length, the spatially-varying phase contains information beyond that which is accessible at a single detector. We introduce a formalism to extract this information, which performs interferometry directly on the DM wave. In particular, we develop a likelihood-based framework that combines data from multiple experiments to constrain directional information about the DM phase space distribution. We show that the signal in multiple detectors is subject to a daily modulation effect unique to wave-like DM. Leveraging daily modulation, we illustrate that within days of an initial discovery multiple detectors acting in unison could localize directional parameters of the DM velocity distribution such as the direction of the solar velocity to sub-degree accuracy, or the direction of a putative cold DM stream to the sub-arcminute level. We outline how to optimize the locations of multiple detectors with either resonant cavity (such as ADMX or HAYSTAC) or quasistatic (such as ABRACADABRA or DM-Radio) readouts to have maximal sensitivity to the full 3-dimensional DM velocity distribution.