论文标题

用LISA估算GPU加速巨大的黑洞二进制参数估计

GPU-accelerated massive black hole binary parameter estimation with LISA

论文作者

Katz, Michael L., Marsat, Sylvain, Chua, Alvin J. K., Babak, Stanislav, Larson, Shane L.

论文摘要

激光干涉仪空间天线(LISA)计划于2030年代初发射。该任务的主要目标是巨大的黑洞二进制文件,其预期检测率为$ \ sim20 $ yr $^{ - 1} $。我们提供了各种大型黑洞二进制文件的参数估计分析。该分析是通过图形处理单元(GPU)实现进行的,其中包括具有高阶谐波模式和对齐的旋转的现象波形;快速域的LISA检测器响应函数;以及GPU本地的可能性计算。用GPU实现的计算性能显示出比相似的CPU实现的500倍,这使我们能够在逼真的傅立叶箱宽度上分析全噪声注射,以在lisa Mission中以易于且有效的时间进行丽莎任务。通过这些快速计算,我们研究了通过测试注射中旋转的不同构型以及在采样过程中不同和固定旋转的效果,将对齐的旋转添加到具有高阶模式的分析中的效果。在这些测试中,我们检查了三种不同的质量比,红移,天空位置和探测器框架总质量在三个数量级以上的二进制文件。我们讨论了总质量和质量比之间的不同相关性。更大的质量二进制文件的独特旋转后期;以及在抽样过程中固定旋转时的参数的约束,使我们能够与不包含对齐旋转的先前分析进行比较。

The Laser Interferometer Space Antenna (LISA) is slated for launch in the early 2030s. A main target of the mission is massive black hole binaries that have an expected detection rate of $\sim20$ yr$^{-1}$. We present a parameter estimation analysis for a variety of massive black hole binaries. This analysis is performed with a graphics processing unit (GPU) implementation comprising the phenomhm waveform with higher-order harmonic modes and aligned spins; a fast frequency-domain LISA detector response function; and a GPU-native likelihood computation. The computational performance achieved with the GPU is shown to be 500 times greater than with a similar CPU implementation, which allows us to analyze full noise-infused injections at a realistic Fourier bin width for the LISA mission in a tractable and efficient amount of time. With these fast likelihood computations, we study the effect of adding aligned spins to an analysis with higher-order modes by testing different configurations of spins in the injection, as well as the effect of varied and fixed spins during sampling. Within these tests, we examine three different binaries with varying mass ratios, redshifts, sky locations, and detector-frame total masses ranging over three orders of magnitude. We discuss varied correlations between the total masses and mass ratios; unique spin posteriors for the larger mass binaries; and the constraints on parameters when fixing spins during sampling, allowing us to compare to previous analyses that did not include aligned spins.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源