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Exploring the Use of Numerical Relativity Waveforms in Burst Analysis of Precessing Black Hole Mergers

机译:探讨数值相关性波形在进行黑洞合并爆破分析中的应用

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摘要

Recent years have witnessed tremendous progress in numerical relativity and an ever improving performance of ground-based interferometric gravitational wave detectors. In preparation for Advanced LIGO and a new era in gravitational wave astronomy, the numerical relativity and gravitational wave data analysis communities are collaborating to ascertain the most useful role for numerical relativity waveforms in the detection and characterization of binary black hole coalescences. In this paper, we explore the detectability of equal mass, merging black hole binaries with precessing spins and total mass M_T in [80,350]Msol, using numerical relativity waveforms and template-less search algorithms designed for gravitational wave bursts. In particular, we present a systematic study using waveforms produced by the MAYAKRANC code that are added to colored, Gaussian noise and analyzed with the Omega burst search algorithm. Detection efficiency is weighed against the orientation of one of the black-hole\u27s spin axes. We find a strong correlation between the detection efficiency and the radiated energy and angular momentum, and that the inclusion of the l=2, m=+/-1,0 modes, at a minimum, is necessary to account for the full dynamics of precessing systems.
机译:近年来,数字相对论取得了巨大进步,并且地面干涉式重力波探测器的性能不断提高。为了准备先进的LIGO和引力波天文学的新时代,数值相对论和引力波数据分析界正在合作,以确定数值相对论波形在检测和表征二元黑洞合并中最有用的作用。在本文中,我们使用数值相对论波形和为引力波猝发设计的无模板搜索算法,探索了等质量的可检测性,将黑洞二进制文件与进动自旋和总质量M_T合并在[80,350] Msol中。尤其是,我们对使用MAYAKRANC码产生的波形进行了系统的研究,这些波形被添加到有色的高斯噪声中,并使用Omega突发搜索算法进行了分析。权衡检测效率与黑洞自旋轴之一的方向。我们发现检测效率与辐射能量和角动量之间有很强的相关性,并且至少要包括l = 2,m = + /-1,0个模,才能考虑到进动系统。

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