论文标题
解释引力波爆发检测:没有天体物理模型的约束源特性
Interpreting gravitational-wave burst detections: constraining source properties without astrophysical models
论文作者
论文摘要
我们表明,对于引力波瞬变的检测,可以在源的物理参数中给出约束,而无需使用任何特定的天体物理模型。仅依靠一般相对论的基本原理,我们只能将源的大小,质量和距离与观察到的波形的特征设置为上限。如果源的距离已知与独立(例如电磁)观测值知道,我们还可以对质量和大小设置下限。作为演示,我们对Ligo和处女座探测器在其第一次和第二个观察过程中观察到的二进制黑洞信号以及模拟的二进制黑洞和核心 - 循环超新星信号在模拟检测器数据中重建的二进制黑洞信号进行了测试。我们发现,我们的约束对于所有分析的源类型都是有效的,但是它们的效率(即它们距离真实参数值有多远)极大地取决于源类型,从处于相同的数量级到几个数量级差的顺序。如果在没有波形模板的情况下重建引力波信号并且在源上没有天体物理模型,则这些约束提供了可以指导天体物理建模过程的源唯一的定量表征。
We show that for detections of gravitational-wave transients, constraints can be given on physical parameters of the source without using any specific astrophysical models. Relying only on fundamental principles of general relativity, we can set upper limits on the size, mass, and distance of the source solely from characteristics of the observed waveform. If the distance of the source is known from independent (e.g. electromagnetic) observations, we can also set lower limits on the mass and size. As a demonstration, we tested these constraints on binary black hole signals observed by the LIGO and Virgo detectors during their first and second observing runs, as well as on simulated binary black hole and core-collapse supernova signals reconstructed from simulated detector data. We have found that our constraints are valid for all analyzed source types, but their efficiency (namely, how far they are from the true parameter values) strongly depends on the source type, ranging from being in the same order of magnitude to a several orders of magnitude difference. In cases when a gravitational-wave signal is reconstructed without waveform templates and no astrophysical model on the source is available, these constraints provide the only quantitative characterization of the source that can guide the astrophysical modeling process.