论文标题
搜索4-OGC和Fermi-GBM/Swift-Bat目录的重合引力波和长伽马射线爆发
Search for Coincident Gravitational Wave and Long Gamma-Ray Bursts from 4-OGC and the Fermi-GBM/Swift-BAT Catalog
论文作者
论文摘要
最近发现的与明显的长期伽马射线爆发相关的基洛诺瓦(Kilonova)挑战了典型的分类,即长伽马射线爆发源于大型恒星的核心崩溃,而短伽玛射线爆发来自紧凑型二进制二元合并。 Kilonova表示中子星的合并起源,并表明重力波和长伽玛射线爆发多中间机天文学的生存能力。引力波通过为源特性提供独立的信息来发挥关键作用。这项工作重新审视了来自4-OGC目录的2015 - 2020年Ligo/处女座重力波候选者,它们与二进制中子星或中子星星 - 黑色孔合并以及长期持续的伽马射线和Swift-GBM和Swift-Bat-Bat Catalogs一致。我们在重力波候选者和长期伽玛射线爆发的发作之间搜索空间和时间巧合,最多10 s的时间滞后。最重要的候选人协会的警报率每两年的误报率仅为一次。鉴于Ligo/处女座观察期,这与无效结果一致。我们报告了每个搜索候选者的排除距离,用于基准重力波信号和保守的视角假设。
The recent discovery of a kilonova associated with an apparent long-duration gamma-ray burst has challenged the typical classification that long gamma-ray bursts originate from the core collapse of massive stars and short gamma-ray bursts are from compact binary coalescence. The kilonova indicates a neutron star merger origin and suggests the viability of gravitational-wave and long gamma-ray burst multimessenger astronomy. Gravitational waves play a crucial role by providing independent information for the source properties. This work revisits the archival 2015-2020 LIGO/Virgo gravitational-wave candidates from the 4-OGC catalog which are consistent with a binary neutron star or neutron star-black hole merger and the long-duration gamma-ray bursts from the Fermi-GBM and Swift-BAT catalogs. We search for spatial and temporal coincidence with up to 10 s time lag between gravitational-wave candidates and the onset of long-duration gamma-ray bursts. The most significant candidate association has only a false alarm rate of once every two years; given the LIGO/Virgo observational period, this is consistent with a null result. We report an exclusion distance for each search candidate for a fiducial gravitational-wave signal and conservative viewing angle assumptions.