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在中子星合并 GW170817 中进行的光学超光速运动测量。

Optical superluminal motion measurement in the neutron-star merger GW170817.

机构信息

Caltech, Pasadena, CA, USA.

National Radio Astronomy Observatory, Socorro, NM, USA.

出版信息

Nature. 2022 Oct;610(7931):273-276. doi: 10.1038/s41586-022-05145-7. Epub 2022 Oct 12.

Abstract

The afterglow of the binary neutron-star merger GW170817 gave evidence for a structured relativistic jet and a link between such mergers and short gamma-ray bursts. Superluminal motion, found using radio very long baseline interferometry (VLBI), together with the afterglow light curve provided constraints on the viewing angle (14-28 degrees), the opening angle of the jet core (less than 5 degrees) and a modest limit on the initial Lorentz factor of the jet core (more than 4). Here we report on another superluminal motion measurement, at seven times the speed of light, leveraging Hubble Space Telescope precision astrometry and previous radio VLBI data for GW170817. We thereby obtain a measurement of the Lorentz factor of the wing of the structured jet, as well as substantially improved constraints on the viewing angle (19-25 degrees) and the initial Lorentz factor of the jet core (more than 40).

摘要

双中子星合并事件 GW170817 的余晖为相对论性喷流的结构提供了证据,并将此类合并与短伽马射线暴联系起来。利用甚长基线干涉测量(VLBI)在无线电波段发现的超光速运动,以及余晖光变曲线,限制了喷流核心的视向角(14-28 度)、喷流核心的张角(小于 5 度)以及喷流核心初始洛伦兹因子的适度限制(大于 4)。在这里,我们报告了另一次超光速运动测量,速度达到光速的七倍,利用哈勃太空望远镜的高精度天体测量和 GW170817 的先前无线电 VLBI 数据。因此,我们获得了对结构喷流翼的洛伦兹因子的测量,以及对视向角(19-25 度)和喷流核心初始洛伦兹因子(大于 40)的显著改进限制。

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