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A BAYESIAN APPROACH TO MULTI-MESSENGER ASTRONOMY: IDENTIFICATION OF GRAVITATIONAL-WAVE HOST GALAXIES

机译:多信天文学的贝叶斯方法:重力波主机星系的识别

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摘要

We present a general framework for incorporating astrophysical information into Bayesian parameter estimation techniques used by gravitational wave data analysis to facilitate multi-messenger astronomy. Since the progenitors of transient gravitational wave events, such as compact binary coalescences, are likely to be associated with a host galaxy, improvements to the source sky location estimates through the use of host galaxy information are explored. To demonstrate how host galaxy properties can be included, we simulate a population of compact binary coalescences and show that for ~8.5% of simulations within 200?Mpc, the top 10 most likely galaxies account for a ~50% of the total probability of hosting a gravitational wave source. The true gravitational wave source host galaxy is in the top 10 galaxy candidates ~10% of the time. Furthermore, we show that by including host galaxy information, a better estimate of the inclination angle of a compact binary gravitational wave source can be obtained. We also demonstrate the flexibility of our method by incorporating the use of either the B or K band into our analysis.
机译:我们提出了一个将天体信息纳入贝叶斯参数估计技术的一般框架,该技术用于重力波数据分析,以促进多信使天文学的发展。由于瞬时重力波事件的始祖,例如紧凑的二元合并,很可能与宿主星系有关,因此,探索了通过使用宿主星系信息来改进源天空位置估计的方法。为了演示如何包含宿主星系属性,我们模拟了紧凑的二元合并种群,并显示了在200?Mpc范围内约有8.5%的模拟,前10个最可能的星系约占宿主总数的约50%引力波源。真正的引力波源宿主星系在前10个候选星系中占10%的时间。此外,我们表明,通过包含宿主星系信息,可以更好地估计紧凑型二元重力波源的倾角。我们还通过将B或K波段的使用并入我们的分析中来证明我们方法的灵活性。

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