论文标题

紧凑型二进制合并的随机重力波背景的StarTrack预测

StarTrack predictions of the stochastic gravitational-wave background from compact binary mergers

论文作者

Périgois, C., Belczynski, C., Bulik, T., Regimbau, T.

论文摘要

我们使用\ textbf {\ textIt {startrack}}二进制总体代码来建模由双重紧凑对象创建的引力波背景。我们包括人口I/II星以及无金属人口III星。考虑合并和非合并双重紧凑对象二进制文件。 为了对空间天线丽莎带的低频信号进行建模,我们解释了红移和偏心率的演变。我们发现$ω__{GW} \ SIM 1.0 \ times 10^{ - 9} $的能量密度仅为25 Hz的人口I/II的参考频率,使得背景可检测到3 $σ$,经过7年的观察,与当前的基于地面的检测器(例如Ligo,Virgo和Kagagra)进行了设计,在设计具有设计时,可以在设计敏感的情况下进行。人口III的贡献是总背景下的人口I/II的一个数量级,但在3G检测器中删除了检测到的来源后,占主导地位。它修改了频谱的形状,该光谱开始从$ \ sim 10 $ hz之后开始偏离通常的功率定律$ω__{gw}(f)(f)\ sim f^{2/3} $。另一方面,非合并二进制文件的人口的贡献可以忽略不计,低于低于数量级。最后,我们观察到偏心率对丽莎或地面检测器的频带没有影响。

We model the gravitational-wave background created by double compact objects from isolated binary evolution across cosmic time using the \textbf{\textit{StarTrack}} binary population code. We include population I/II stars as well as metal-free population III stars. Merging and non-merging double compact object binaries are taken into account. In order to model the low frequency signal in the band of the space antenna LISA, we account for the evolution of the redshift and the eccentricity. We find an energy density of $Ω_{GW} \sim 1.0 \times 10^{-9}$ at the reference frequency of 25 Hz for population I/II only, making the background detectable at 3 $σ$ after about 7 years of observation with the current generation of ground based detectors, such as LIGO, Virgo and Kagra, operating at design sensitivity. The contribution from population III is one order of magnitude below the population I/II for the total background, but dominates the residual background, after detected sources have been removed, in 3G detectors. It modifies the shape of the spectrum which starts deviating from the usual power law $Ω_{GW}(f) \sim f^{2/3}$ after $\sim 10$ Hz. The contribution from the population of non merging binaries, on the other hand, is negligible, being orders of magnitude below. Finally, we observe that the eccentricity has no impact in the frequency band of LISA or ground based detectors.

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