论文标题
灵感双紧密对象检测和镜头率 - 预测Decigo和B-Decigo
Inspiraling double compact object detection and lensing rate -- forecast for DECIGO and B-DECIGO
论文作者
论文摘要
引力波(GW)天文学的出现恢复了探索从地面无法访问的低频GW频谱的兴趣。卫星GW天文台的原始配置和当前提出的较小规模的B-Decigo的目的是覆盖GW Spectrum的Deci-Hertz部分,该部分填补了地面检测器探测的Lisa Mili-Hertz和Deca- deca-Hertz之间的空白。在本文中,我们预测了Decigo和B-Decigo中这些来源的灵感双重对象(DCO)的检测率和未解决的混乱噪声。在Decigo的背景下,我们首次使用NS-NS,BH-NS和BH-BH系统的种群综合固有灵感率。我们还估计了Decigo和B-Decigo的此类来源的预期重力镜头率。结果是,DECIGO的DCOS Insprass的年度检测为$ 10^4-10^5 $,而对于较小的B -Decigo来说,它们的价格约为$ 10^2-10^4 $,具体取决于所考虑的DCO人群。考虑到这些事件的相当一部分将被基于地面的GW观测值检测到Decigo/B-Decigo的附加值可能是很大的。 Decigo还将能够注册$ 5-50 $镜头的NS-NS Insprals和最多O(100)BH-BH Insprals。相反,对b-decigo的预测是悲观的:只有DCO组的乐观共同包膜场景每年才能产生一些镜头BH-BH灵感。我们还解决了Decigo和B-Decigo的GW事件目录中放大偏见的问题。
Emergence of gravitational wave (GW) astronomy revived the interest in exploring the low frequency GW spectrum inaccessible from the ground. Satellite GW observatory DECIGO in its original configuration and the currently proposed smaller scale B-DECIGO are aimed to cover deci-Hertz part of the GW spectrum, which fills the gap between LISA mili-Hertz and deca- to kilo-Hertz range probed by ground-based detectors. In this paper we forecast the detection rates of inspiraling double compact objects (DCOs) and the unresolved confusion noise from these sources in DECIGO and B-DECIGO. In the context of DECIGO we use, for the first time, the population synthesis intrinsic inspiral rates of NS-NS, BH-NS and BH-BH systems. We also estimate the expected gravitational lensing rates of such sources for DECIGO and B-DECIGO. The result is that yearly detection of DCOs inspirals for the DECIGO is of order of $10^4 - 10^5$, while for a much smaller scale B-DECIGO they are about $10^2 - 10^4$ depending on the DCO population considered. Taking into account that considerable part of these events would be detectable by ground-based GW observatories the added value of DECIGO/B-DECIGO could be substantial. DECIGO will also be able to register $5-50$ lensed NS-NS inspirals and up to O(100) BH-BH inspirals. On the contrary, predictions for the B-DECIGO are pessimistic: only the optimistic common envelope scenario of DCO formation could yield a few lensed BH-BH inspirals per year. We also address the question of the magnification bias in the GW event catalogs of DECIGO and B-DECIGO.