论文标题
透镜选择效果的表征丽莎巨大的黑洞二进制合并
Characterisation of lensing selection effects for LISA massive black hole binary mergers
论文作者
论文摘要
我们提出了一种通过研究重力波(GW)源的镜头时,由于给定检测器的有限范围,包括透镜选择效应。当包括选择效果时,对于足够高的高射线源,放大分布的平均值从一个转移到更高的值。除了距离测定中的典型不确定性来源外,这还引入了亮度距离重建的不可约(乘法)偏置。我们将此方法应用于研究Lisa可检测到的高红移时大量黑洞二进制合并发出的GW的镜头。我们估计选择效果对光度距离重建作为宇宙红移的功能所引起的预期偏差,并与LISA讨论其对宇宙学和天体物理分析的影响。我们还重建了镜头放大倍率的分布,这是观察到的光度距离与源的函数,即在没有电磁对应物的情况下,可观察到的数量是可观察到的。镜头为高红移GW来源的距离测量值提供了误差的主要来源。它的全部表征,包括选择效应的影响,对于正确确定基本源人群的天体物理特性并能够将重力波源用作新的宇宙学探测至关重要。
We present a method to include lensing selection effects due to the finite horizon of a given detector when studying lensing of gravitational wave (GW) sources. When selection effects are included, the mean of the magnification distribution is shifted from one to higher values for sufficiently high-redshift sources. This introduces an irreducible (multiplicative) bias on the luminosity distance reconstruction, in addition to the typical source of uncertainty in the distance determination. We apply this method to study lensing of GWs emitted by massive black hole binary mergers at high redshift detectable by LISA. We estimate the expected bias induced by selection effects on the luminosity distance reconstruction as function of cosmological redshift, and discuss its implications for cosmological and astrophysical analyses with LISA. We also reconstruct the distribution of lensing magnification as a function of the observed luminosity distance to a source, that is the observable quantity in the absence of an electromagnetic counterpart. Lensing provides the dominant source of errors in distance measurements of high-redshift GW sources. Its full characterisation, including the impact of selection effects, is of paramount importance to correctly determine the astrophysical properties of the underlying source population and to be able to use gravitational wave sources as a new cosmological probe.