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Modeling and Development of Soft Gamma-Ray Channeling

机译:软伽马射线通道的建模与开发

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We have investigated the use of multilayer thin film structures for channeling and concentrating soft gamma rays w ith energies greater than 100 keV, beyond the reach of current grazing-incidence hard X-ray mirrors. A suitable arrangement of bent multilayer structures of alternating low and high-density materials will channel soft gamma-ray photons via total external reflection and then concentrate the incident radiation to a point. We describe the properties of W/Si multilayer structure produced by magnetron sputter technique with the required thicknesses and smoothness. We also have developed a flexible set of computer modeling tools to compute the optical properties of multilayer structures, predict the channeling efficiency for a given multilayer configuration and aid in the optimization of potential gamma-ray concentrator-based telescope designs. This modeling includes multilayer optical properties calculated by the IMD software, IDL gamma ray tracing code and a focal plane detector simulation by MEGAlib. This technology offers the potential for soft gamma-ray telescopes with focal lengths of less than 10 m, removing the need of formation flying spacecraft and providing greatly increased sensitivity for modest cost and complexity and opening the field up to balloon-borne instruments.
机译:我们已经研究了使用多层薄膜结构来引导和聚集能量大于100 keV的软伽马射线,这超出了当前掠入射硬X射线镜的范围。交替排列的低密度和高密度材料的弯曲多层结构的合适布置将通过全外反射引导软伽马射线光子,然后将入射辐射集中到一个点。我们描述了具有所需厚度和光滑度的磁控溅射技术生产的W / Si多层结构的性能。我们还开发了一套灵活的计算机建模工具,可以计算多层结构的光学特性,预测给定多层配置的通道效率,并帮助优化潜在的基于伽玛射线集中器的望远镜设计。该建模包括由IMD软件计算出的多层光学特性,IDL伽马射线追踪代码以及由MEGAlib进行的焦平面检测器仿真。该技术为焦距小于10 m的软伽马射线望远镜提供了潜力,消除了编队飞行航天器的需要,并为适度的成本和复杂性提供了大大提高的灵敏度,并为气球型仪器打开了视野。

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