论文标题
有效的一体波形的完全进攻高模式的替代模型
A fully precessing higher-mode surrogate model of effective-one-body waveforms
论文作者
论文摘要
我们提出了\ texttt {seobnrv4phm}的替代模型,这是一种完全进攻的时间域有效的一个体波形模型,包括亚分手模式。我们遵循类似于用于构建最近数值相对性替代模型的方法。我们的替代持续时间为5000m,覆盖高达1:20的质量比例,无量纲的自旋幅度最高为0.8。验证替代物针对独立测试集验证,我们发现大部分替代错误小于不匹配中的$ \ sim 1 \%$,这与\ texttt {seobnrv4phm}本身的建模错误相似。如果总质量高,则在高质量下,如果它们高度进攻,并且超过1:4的质量比率,则可能会超过此阈值。该代理比基础时间域\ texttt {seobnrv4phm}模型快两个数量级,并且可以在$ \ sim 50 $ ms中进行评估。 \ texttt {seobnrv4phm}的贝叶斯推理分析通常在计算上非常苛刻,并且可能需要几周到几个月才能完成。我们的替代模型达到的两个幅度加速顺序可以通过此波形家族进行实际参数估计分析。这是\ emph {cocial},因为贝叶斯推断允许我们恢复发射引力波形的模型以及对噪声的描述,恢复了二进制黑洞合并的质量和旋转。
We present a surrogate model of \texttt{SEOBNRv4PHM}, a fully precessing time-domain effective-one-body waveform model including subdominant modes. We follow an approach similar to that used to build recent numerical relativity surrogate models. Our surrogate is 5000M in duration, covers mass-ratios up to 1:20 and dimensionless spin magnitudes up to 0.8. Validating the surrogate against an independent test set we find that the bulk of the surrogate errors is less than $\sim 1\%$ in mismatch, which is similar to the modelling error of \texttt{SEOBNRv4PHM} itself. At high total mass a few percent of configurations can exceed this threshold if they are highly precessing and they exceed a mass-ratio of 1:4. This surrogate is nearly two orders of magnitude faster than the underlying time-domain \texttt{SEOBNRv4PHM} model and can be evaluated in $\sim 50$ ms. Bayesian inference analyses with \texttt{SEOBNRv4PHM} are typically very computationally demanding and can take from weeks to months to complete. The two order of magnitude speedup attained by our surrogate model enables practical parameter estimation analyses with this waveform family. This is \emph{crucial} because Bayesian inference allows us to recover the masses and spins of binary black hole mergers given a model of the emitted gravitational waveform along with a description of the noise.