论文标题
探测带有重力波探测器的暗物质团块,弦和域壁
Probing Dark Matter Clumps, Strings and Domain Walls with Gravitational Wave Detectors
论文作者
论文摘要
引力波天文学最近成为研究我们宇宙的一种新方法。在这项工作中,我们调查了引力波干涉仪检测包含暗物质的宏观天体物理对象的潜力。从众所周知的团块案例开始,我们扩展到宇宙弦和域壁。我们还考虑了测量小尺度上暗物质功率谱的敏感性。我们的分析基于以下事实:这些对象在遍历检测器的附近时将在干涉仪的每个节点上施加引力拉力,进而导致可以测量的差分加速度和相应的多普勒信号。作为重力波干涉仪的典型示例,我们考虑了在丽莎引起的信号。我们将结果进一步推断为重力波实验在其他频带中敏感的重力波实验,包括地面干涉仪,例如Ligo和Pulsar Pursing Arrays,例如基于平方公里阵列。假设这些实验的敏感性提高了当前设计,团块,字符串和域壁可能会在这些实验范围内。
Gravitational wave astronomy has recently emerged as a new way to study our Universe. In this work, we survey the potential of gravitational wave interferometers to detect macroscopic astrophysical objects comprising the dark matter. Starting from the well-known case of clumps we expand to cosmic strings and domain walls. We also consider the sensitivity to measure the dark matter power spectrum on small scales. Our analysis is based on the fact that these objects, when traversing the vicinity of the detector, will exert a gravitational pull on each node of the interferometer, in turn leading to a differential acceleration and corresponding Doppler signal, that can be measured. As a prototypical example of a gravitational wave interferometer, we consider signals induced at LISA. We further extrapolate our results to gravitational wave experiments sensitive in other frequency bands, including ground-based interferometers, such as LIGO, and pulsar timing arrays, e.g. ones based on the Square Kilometer Array. Assuming moderate sensitivity improvements beyond the current designs, clumps, strings and domain walls may be within reach of these experiments.