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A Distant Fast Radio Burst Associated with Its Host Galaxy by the Very Large Array

机译:与非常大的阵列与其主机星系相关的遥远的快速无线电突发

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We present the discovery and subarcsecond localization of a new fast radio burst (FRB) by the Karl G. Jansky Very Large Array (VLA) and realfast search system. The FRB was discovered on 2019 June?14 with a dispersion measure of 959 . This is the highest DM of any localized FRB and its measured burst fluence of 0.6 Jy ms is less than nearly all other FRBs. The source is not detected to repeat in 15 hr of VLA observing and 153 hr of CHIME/FRB observing. We describe a suite of statistical and data quality tests we used to verify the significance of the event and its localization precision. Follow-up optical/infrared photometry with Keck and Gemini associate the FRB with a pair of galaxies with mag. The false-alarm rate for radio transients of this significance that are associated with a host galaxy is roughly . The two putative host galaxies have similar photometric redshifts of , but different colors and stellar masses. Comparing the host distance to that implied by the dispersion measure suggests a modest ( ) electron column density associated with the FRB environment or host galaxy/galaxies.
机译:我们通过KARL G. jansky非常大的阵列(VLA)和“I>实际搜索系统”介绍了新的快速无线电突发(FRB)的发现和子分析定位。 FRB于2019年6月14日发现,具有959的分散测量。这是任何本地化FRB的最高DM,其测量的0.6 JY MS的爆发速度小于几乎所有其他FRB。未检测到源以重复在15小时的VLA观察和153小时的响铃/ FRB观察。我们描述了一套统计和数据质量测试,我们用于验证事件的重要性及其本地化精度。随访光/红外测光与Keck和Gemini将FRB与MAG的一对星系相关联。粗略地,与主机星系相关联的这种意义的无线电瞬变的假警报率。这两个推定的宿主星系具有相似的光度红移,但不同的颜色和恒星群体。将主距离与色散测量暗示的距离进行比较,表明了与FRB环境或主机星系/星系相关联的适度()电子列密度。

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