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THE NUCLEAR SPECTROSCOPIC TELESCOPE ARRAY (NuSTAR) HIGH-ENERGY X-RAY MISSION

机译:核光谱望远镜阵列(NuSTAR)高能X射线任务

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The Nuclear Spectroscopic Telescope Array (NuSTAR) mission, launched on 2012 June 13, is the first focusing high-energy X-ray telescope in orbit. NuSTAR operates in the band from 3 to 79?keV, extending the sensitivity of focusing far beyond the ~10?keV high-energy cutoff achieved by all previous X-ray satellites. The inherently low background associated with concentrating the X-ray light enables NuSTAR to probe the hard X-ray sky with a more than 100-fold improvement in sensitivity over the collimated or coded mask instruments that have operated in this bandpass. Using its unprecedented combination of sensitivity and spatial and spectral resolution, NuSTAR will pursue five primary scientific objectives: (1) probe obscured active galactic nucleus (AGN) activity out to the peak epoch of galaxy assembly in the universe (at z 2) by surveying selected regions of the sky; (2) study the population of hard X-ray-emitting compact objects in the Galaxy by mapping the central regions of the Milky Way; (3) study the non-thermal radiation in young supernova remnants, both the hard X-ray continuum and the emission from the radioactive element 44Ti; (4) observe blazars contemporaneously with ground-based radio, optical, and TeV telescopes, as well as with Fermi and Swift, to constrain the structure of AGN jets; and (5) observe line and continuum emission from core-collapse supernovae in the Local Group, and from nearby Type?Ia events, to constrain explosion models. During its baseline two-year mission, NuSTAR will also undertake a broad program of targeted observations. The observatory consists of two co-aligned grazing-incidence X-ray telescopes pointed at celestial targets by a three-axis stabilized spacecraft. Deployed into a 600?km, near-circular, 6° inclination orbit, the observatory has now completed commissioning, and is performing consistent with pre-launch expectations. NuSTAR is now executing its primary science mission, and with an expected orbit lifetime of 10?yr, we anticipate proposing a guest investigator program, to begin in late 2014.
机译:于2012年6月13日发射的核光谱望远镜阵列(NuSTAR)任务是轨道上的第一台聚焦高能X射线望远镜。 NuSTAR的工作频率范围为3至79?keV,使聚焦的灵敏度远远超过了以前所有X射线卫星实现的〜10?keV高能截止。与在X带光中聚焦的准直或编码掩膜仪相比,NuSTAR固有的与X射线光集中相关的低本底使得NuSTAR能够探测硬X射线天空,其灵敏度提高了100倍以上。利用其空前的灵敏度,空间和光谱分辨率的组合,NuSTAR将追求五个主要的科学目标:(1)通过勘测探测隐藏的活跃银河核(AGN)活动到宇宙中银河系集合的最高纪元(z 2)。选定的天空区域; (2)通过绘制银河系的中心区域,研究银河系中发射硬X射线的致密物体的数量; (3)研究年轻超新星残骸中的非热辐射,硬X射线连续体和放射性元素44Ti的发射; (4)同时使用地面射电,光学和TeV望远镜以及费米和斯威夫特(Fermi)和斯威夫特(Swift)观测大酒瓶,以限制AGN射流的结构; (5)观察局部群中核心坍塌超新星以及附近的Iaa类事件的线和连续发射,以约束爆炸模型。在为期两年的基准访问期间,NuSTAR还将承担一项广泛的有针对性的观测计划。该天文台由两个由三轴稳定的航天器对准天体目标的放牧入射X射线望远镜组成。天文台已部署到600公里长,接近圆形,倾斜6°的轨道上,现已完成调试,并且性能与发射前的预期一致。 NuSTAR现在正在执行其主要科学任务,预计轨道寿命为10年,我们预计将提出一项客座研究员计划,该计划将于2014年底开始。
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