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Automatic Analysis of Swift-XRT Data

机译:SWIFT-XRT数据的自动分析

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The Swift spacecraft detects and autonomously observes —100 Gamma Ray Bursts (GRBs) per year, —96% of which are detected by the X-ray telescope (XRT). GRBs are accompanied by optical transients and the field of ground-based follow-up of GRBs has expanded significantly over the last few years, with rapid response instruments capable of responding to Swift triggers on timescales of minutes. To make the most efficient use of limited telescope time, follow-up astronomers need accurate positions of GRBs as soon as possible after the trigger. Additionally, information such as the X-ray light curve, is of interest when considering observing strategy. The Swift team at Leicester University have developed techniques to improve the accuracy of the GRB positions available from the XRT, and to produce science-grade X-ray light curves of GRBs. These techniques are fully automated, and are executed as soon as data are available.
机译:SWIFT航天器检测并自主地观察每年-100伽马射线爆发(GRB),其中-96%由X射线望远镜(XRT)检测。 GRBS伴随着光学瞬变,在过去几年中,GRB的基于地面后续的领域已经显着扩展,具有快速响应仪器,能够在分钟的时间内响应SWIFT触发器。为了最有效地使用有限的望远镜时间,后续天文学家在触发后尽快在GRBS的准确位置。另外,在考虑观察策略时,X射线光曲线等信息是感兴趣的。莱斯特大学的Swift团队已经开发了技术,以提高XRT获得的GRB位置的准确性,并生产GRBS的科学级X射线光线曲线。这些技术完全自动化,并在数据可用后立即执行。

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