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THE SWIFT GAMMA-RAY BURST X-RAY TELESCOPE

机译:Swift Gamma-射线爆裂X射线望远镜

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摘要

The Swift Gamma-Ray Burst Explorer is designed to make prompt multi-wavelength observations of Gamma-Ray Bursts and GRB afterglows. The X-ray Telescope enables Swift to determine GRB positions with a few arcseconds accuracy within 100 seconds of the burst onset. The XRT utilizes a mirror set built for JET-X and an XMM-Newton/EPIC MOS CCD detector to provide a sensitive broad-band (0.2-10 keV) X-ray imager with an effective area of more than 120 cm{sup}2 at 1.5 keV, a field of view of 23.6 × 23.6 arcminutes, and an angular resolution of 18 arcseconds (HPD). The detection sensitivity is 2×10{sup}(-14)erg cm{sup}(-2) s{sup}(-1) in 10{sup}4 seconds. The instrument provides automated source detection and position reporting within 5 seconds of target acquisition. It can also measure the redshifts of GRBs with Iron line emission or other spectral features. The XRT operates in an auto-exposure mode, adjusting the CCD readout mode automatically to optimize the science return as the source intensity fades. The XRT measures spectra and lightcurves of the GRB afterglow beginning about a minute after the burst and follows each burst for days or weeks. We provide an overview of the X-ray Telescope scientific background from which the systems engineering requirements were derived, with specific emphasis on the design and qualification aspects from conception through to launch. We describe the impact on cleanliness and vacuum requirements for the instrument low energy response and to maintain the high sensitivity to the fading signal of the Gamma-ray Bursts.
机译:Swift Gamma-Ray Burst Explorer旨在使伽马射线突发和GRB余辉的迅速多波长观测。 X射线望远镜使SWIFT能够在突发发作的100秒内以少量弧形精度确定GRB位置。 XRT利用用于Jet-X和XMM-Newton / Epic MOS CCD检测器的镜像设置,提供敏感的宽带(0.2-10keV)X射线成像仪,其有效面积超过120厘米{Sup} 2在1.5 kev,视野为23.6×23.6 Arcminutes,角度分辨率为18个弧形(HPD)。检测灵敏度为2×10 {sup}( - 14)ERG CM {SUP}( - 2)S {SUP}( - 1),在10°{SUP} 4秒内。该仪器在目标采集的5秒内提供自动源检测和位置报告。它还可以测量带有铁线发射或其他光谱特征的GRB的红移。 XRT以自动曝光模式运行,自动调整CCD读出模式以优化Science Return,因为源强度逐渐消失。 XRT测量突发后一分钟的GRB余辉的光谱和Lightcurves,并在每次爆发时几天或几周。我们概述了X射线望远镜科学背景,从中获得了系统工程要求,特别强调从概念到启动的设计和资格方面。我们描述了对仪器低能量响应的清洁度和真空要求的影响,并保持对伽马射线爆发的衰落信号的高灵敏度。

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