多信使时域天文学的费米GBM能力

V. Connaughton, V. Pelassa, M. Briggs, P. Jenke, E. Troja, J. Mcenery, L. Blackburn
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引用次数: 2

摘要

由于其广阔的天空覆盖范围和广泛的能量范围,费米伽马射线暴监测仪(GBM)是一个优秀的瞬态硬x射线天空观测者。GBM每年探测到大约240次触发的伽马射线暴(grb),其中包括30多次触发快速爆发预警望远镜(BAT)的伽马射线暴。由于GBM不像BAT那么敏感,因此GBM的GRB数量倾向于更亮、更近的爆发,因此与雨燕共同观测到的GRB数量比天空覆盖重叠的预期要少。这个群体每年包括大约45次短grb,这给了GBM一个绝佳的机会来观察任何由紧致双星成员合并产生的引力波候选者的电磁对应物。同样的特性使GBM成为从附近的grb中搜索中微子的理想伙伴,以及难以捉摸的与grb对应的甚高能(VHE)。随着下一代引力波探测器(先进的LIGO/VIRGO)和VHE实验(CTA和HAWC)的部署,突破观测的前景是良好的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FERMI GBM CAPABILITIES FOR MULTI-MESSENGER TIME-DOMAIN ASTRONOMY
Owing to its wide sky coverage and broad energy range, the Fermi Gamma-ray Burst Monitor (GBM) is an excellent observer of the transient hard X-ray sky. GBM detects about 240 triggered Gamma-Ray Bursts (GRBs) per year, including over 30 which also trigger the Swift Burst Alert Telescope (BAT). The number of GRBs seen in common with Swift is smaller than expected from the overlap in sky coverage because GBM is not as sensitive as the BAT and the GBM GRB population is thus skewed to the brighter, closer bursts. This population includes about 45 short GRBs per year, giving GBM an excellent opportunity to observe the electromagnetic counterpart to any gravitational wave candidate resulting from the merger of compact binary members. The same characteristics make GBM an ideal partner for neutrino searches from nearby GRBs, and for the elusive Very-High Energy (VHE) counterparts to GRBs. With the deployment of the next-generation gravitational-wave detectors (Advanced LIGO/VIRGO) and VHE experiments (CTA and HAWC) potentially within the lifetime of the Fermi Gamma-ray Space Telescope, the prospects for breakthrough observations are good.
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