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首页> 外文期刊>IEEE Transactions on Nuclear Science >Development of the TIGRE Compton telescope for intermediate-energy gamma-ray astronomy
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Development of the TIGRE Compton telescope for intermediate-energy gamma-ray astronomy

机译:开发用于中能伽玛射线天文学的TIGRE康普顿望远镜

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摘要

Gamma-ray observations in the low and medium energy range (0.1-100 MeV) with sufficiently sensitive telescopes will provide unique insights into many outstanding high-energy astrophysics questions. The University of California, Riverside (UCR) Tracking and Imaging Gamma-Ray Telescope (TIGRE) Compton gamma-ray telescope uses multilayers of silicon strip detectors to, for the first time, track the Compton electron and CsI(Tl)-photodiode detectors to measure the scattered photon energy. By combining the Compton telescope's inherent imaging capability with improved background discrimination, a larger field-of-view and improved spectral and spatial resolutions, a significant improvement in sensitivity over Compton Gamma-Ray Observatory (CGRO) and INTEGRAL can be achieved. The well-type calorimeter design also enhances the instrument as a gamma-ray polarimeter. The development and flight of a robust Compton telescope represents a unique opportunity to continue the momentum of recent discoveries in low and medium energy gamma-ray astrophysics with CGRO and an absolutely essential step to an extended satellite mission by 2010.
机译:用足够灵敏的望远镜在中低能量范围(0.1-100 MeV)中进行的伽马射线观测将为许多悬而未决的高能天体物理学问题提供独特的见解。加利福尼亚大学河滨(UCR)跟踪和成像伽马射线望远镜(TIGRE)康普顿伽马射线望远镜首次使用多层硅条检测器跟踪康普顿电子和CsI(Tl)-光电二极管检测器,测量散射的光子能量。通过将康普顿望远镜的固有成像能力与改进的背景辨别力,更大的视野以及改进的光谱和空间分辨率相结合,可以实现比康普顿伽玛射线天文台(CGRO)和INTEGRAL显着提高的灵敏度。井型热量计的设计还增强了仪器的伽马射线旋光仪的性能。强大的康普顿望远镜的研发和飞行是一次独特的机会,它可以利用CGRO继续在中低能伽马射线天体物理学领域的最新发现,这是到2010年扩大卫星任务的绝对必要的一步。

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