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SWIFT OBSERVATIONS OF GAMMA-RAY BURSTS

机译:伽马射线爆发的SWIFT观测

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The Swift mission, launched on 20 November 2004, is detecting similar to 100 gamma-ray bursts (GRBs) each year, and immediately (within similar to 90 s) starting X-ray and UV/optical observations of the afterglow. It has already collected an impressive database including prompt emission to higher sensitivities than BATSE, uniform monitoring of afterglows, and rapid follow-up by other observatories notified through the Gamma-ray bursts Coordinates Network (GCN). The X-ray afterglows have been found to have complex temporal shapes including tails emission from the prompt phase and bright flares. X-ray and optical afterglow detections from short bursts have led to accurate localizations. It is found that they can occur in non-star forming galaxies or regions, whereas long GRBs are strongly concentrated within star forming regions. This is consistent with the NS merger model. Swift has greatly increased the redshift range of GRB detection. The highest redshift GRBs, at z similar to 5-6, are approaching the era of reionization. Ground-based deep optical spectroscopy of high redshift bursts is giving metallicity measurements and other information on the source environment to much greater distance than other techniques. The localization of GRB 060218 in a nearby galaxy, and association with SN 2006aj, added a valuable member to the class of GRBs with detected supernova. The prospects for future progress are excellent given the > 10 year orbital lifetime of the Swift satellite.
机译:于2004年11月20日启动的Swift任务,每年检测到约100次伽马射线暴(GRB),并立即(在90 s以内)开始对余辉进行X射线和UV /光学观察。它已经收集了一个令人印象深刻的数据库,包括迅速发射出比BATSE更高的灵敏度,对余辉进行统一监视以及通过伽马射线暴坐标网络(GCN)通知的其他观测站的快速跟进。已发现X射线余辉具有复杂的时间形状,包括从快速阶段发出的尾巴和明亮的耀斑。短脉冲的X射线和光学余辉检测已导致精确的定位。发现它们可以出现在非恒星形成的星系或区域中,而长的GRB强烈集中在恒星形成的区域中。这与NS合并模型是一致的。 Swift大大增加了GRB检测的redshift范围。最高的红移GRB在z处接近5-6,正接近电离时代。高红移猝发的地面深层光学光谱学使源环境中的金属度测量和其他信息的距离比其他技术大得多。 GRB 060218在附近星系中的定位以及与SN 2006aj的关联,为检测到超新星的GRB类添加了一个有价值的成员。鉴于Swift卫星的轨道寿命> 10年,其未来的发展前景非常广阔。

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