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MAX: Development of a Laue diffraction lens for nuclear astrophysics

机译:MAX:开发用于核天体物理学的劳厄衍射透镜

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摘要

The next generation of instrumentation for nuclear astrophysics will have to achieve an improvement in sensitivity by a factor of 10-100 over present technologies. With the focusing gamma-ray telescope MAX we take up this challenge and propose to combine the required sensitivity with high spectral and angular resolution, and the capability to measure the polarization of the photons. MAX is a space-borne crystal diffraction telescope, featuring a broad-band Lane lens optimized for the observation of compact sources in two wide energy bands of high astrophysical relevance. Gamma rays will be focused from the large collecting area of a crystal diffraction lens onto a very small detector volume. As a consequence, the signal to background ratio is greatly enhanced, leading to unprecedented sensitivities. (c) 2006 Elsevier B.V. All rights reserved.
机译:与现有技术相比,下一代核天体物理学仪器必须将灵敏度提高10到100倍。借助聚焦伽玛射线望远镜MAX,我们迎接了这一挑战,并建议将所需的灵敏度与高光谱和角分辨率以及测量光子极化的能力相结合。 MAX是一种星载晶体衍射望远镜,具有宽带Lane透镜,该透镜经过优化,可用于观测在两个高度天体物理相关的宽能带中的紧凑源。伽玛射线将从晶体衍射透镜的较大收集区域聚焦到非常小的检测器体积上。结果,信噪比大大提高,导致了前所未有的灵敏度。 (c)2006 Elsevier B.V.保留所有权利。

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