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HAWC: A NEXT GENERATION ALL-SKY VHE GAMMA-RAY TELESCOPE

机译:Hawc:下一代全天VHE伽马射线望远镜

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The study of the universe at energies above 100 GeV is a relatively new and exciting field. The current generation of pointed instruments have detected TeV gamma rays from at least 10 sources and the next generation of detectors promises a large increase in sensitivity. We have also seen the development of a new type of all-sky monitor in this energy regime based on water Cherenkov technology (Milagro). To fully understand the universe at these extreme energies requires a highly sensitive detector capable of continuously monitoring the entire overhead sky. Such an instrument could observe prompt emission from gamma-ray bursts and probe the limits of Lorentz invariance at high energies. With sufficient sensitivity it could detect short transients (~15 minutes) from active galaxies and study the time structure of flares at energies unattainable to space-based instruments. Unlike pointed instruments a wide-field instrument can make an unbiased study of all active galaxies and enable many multi-wavelength campaigns to study these objects. This paper describes the design and performance of a next generation water Cherenkov detector. To attain a low energy threshold and have high sensitivity the detector should be located at high altitude (> 4km) and have a large area (~40,000 m2). Such an instrument could detect gamma ray bursts out to a redshift of 1, observe flares from active galaxies as short as 15 minutes in duration, and survey the overhead sky at a level of 50 mCrab in one year.
机译:高于100 GEV的宇宙的研究是一个相对较新的令人兴奋的领域。目前尖仪器的产生检测到来自至少10个来源的Tev Gamma射线,下一代检测器承诺大幅增加灵敏度。我们还看到了基于水Cherenkov技术(MilAgro)的能源制度中新型全天显示器的开发。为了充分了解这些极端能量的宇宙需要一种高度敏感的探测器,能够连续监控整个顶部天空。这种仪器可以观察到伽马射线突发的迅速排放,并在高能量下探测Lorentz Invariance的限制。具有足够的敏感性,它可以从活动星系中检测短瞬态(〜15分钟),并研究对基于空间仪器无法实现的能量的耀斑的时间结构。与尖头仪器不同,宽野仪器可以对所有活动星系进行无偏见的研究,并使许多多波长活动能够研究这些物体。本文介绍了下一代水Cherenkov探测器的设计和性能。为了获得低能量阈值并具有高灵敏度,探测器应位于高海拔(> 4公里)并具有大面积(〜40,000平方米)。这种仪器可以检测到γ射线暴出为1的红移,观测到来自活动星系短持续时间15分钟耀斑,并在50 mCrab的在一年内的水平调查开销天空。

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