伽玛射线望远镜数据中短时间尺度瞬变的搜索

IF 3.2 Q2 ASTRONOMY & ASTROPHYSICS Galaxies Pub Date : 2023-07-24 DOI:10.3390/galaxies11040088
Annanay Jaitly, D. Kostunin, Karin Cescon
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引用次数: 0

摘要

天体物理源显示出其发射在一系列时间尺度上的可变性,快速射电暴(FRB)和磁星巨闪焰(MGF)等瞬变在短至几毫秒的时间尺度上显示出可变性。伽马射线天文学的最新进展,如望远镜的高时间分辨率和相对较高的正常运行时间,再加上不同设施之间的后续计划,应该可以偶然观测到类似爆发的现象。即便如此,到目前为止,还没有检测到FRB的高能伽马射线对应物,而且普遍缺乏适合搜索此类现象的软件工具。我们提出了一种能够在任意时间尺度上搜索伽马射线望远镜数据以寻找瞬态现象的工具——它基于Gammapy包,并在用户定义的时间和角度分离间隔内递归扫描给定视场以寻找事件集群。广义实现允许其应用于许多其他情况和多个伽马射线望远镜。本文介绍了所开发工具的主要特点和方法,并对使用该工具进行的开放式伽马射线望远镜数据进行了分析。
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Searching for Short-Timescale Transients in Gamma-ray Telescope Data
Astrophysical sources show variability in their emissions over a range of timescales, with transients such as fast radio bursts (FRBs) and magnetar giant flares (MGFs) showing variability on timescales as short as a few milliseconds. Recent advances in gamma-ray astronomy such as telescopes’ high temporal resolution and relatively high uptime, combined with follow-up programs between different facilities, should allow serendipitous observations of burst-like phenomena. Even so, no very-high-energy gamma-ray counterparts for FRBs have been detected so far, and there is a general lack of software tools suited to search for such phenomena. We present a tool capable of searching gamma-ray telescope data for transient phenomena over arbitrary timescales—it is based on the Gammapy package and recursively scans the given field of view for clusters of events within user-defined time and angular-separation intervals. The generalized implementation allows for its application in many other cases and multiple gamma-ray telescopes. The main features and methodology of the developed tool are presented here, along with an analysis of the open gamma ray telescope data performed using it.
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来源期刊
Galaxies
Galaxies Physics and Astronomy-Astronomy and Astrophysics
CiteScore
4.90
自引率
12.00%
发文量
100
审稿时长
11 weeks
期刊介绍: Es una revista internacional de acceso abierto revisada por pares que proporciona un foro avanzado para estudios relacionados con astronomía, astrofísica y cosmología. Areas temáticas Astronomía Astrofísica Cosmología Astronomía observacional: radio, infrarrojo, óptico, rayos X, neutrino, etc. Ciencia planetaria Equipos y tecnologías de astronomía. Ingeniería Aeroespacial Análisis de datos astronómicos. Astroquímica y Astrobiología. Arqueoastronomía Historia de la astronomía y cosmología. Problemas filosóficos en cosmología.
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