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Blazed transmission grating technology development for the Arcus x-ray spectrometer explorer

机译:Arcus X射线光谱仪探险仪的闪光传输光栅技术开发

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Arcus is a high-resolution soft x-ray spectroscopy mid-size Explorer mission selected for a NASA Phase A concept study. It is designed to explore structure formation through measurements of hot baryon distributions, feedback from black holes, and the formation and evolution of stars, disks, and exoplanet atmospheres. The design provides unprecedented sensitivity in the 1.2-5 nm wavelength band with effective area up to 350 cm~2 and spectral resolving power R > 2500. The Arcus technology is based on a highly modular design that features 12 m-focal length silicon pore optics (SPO) developed for the European Athena mission, and critical-angle transmission (CAT) x-ray diffraction gratings and x-ray CCDs developed at MIT. CAT gratings are blazed transmission gratings that have been under technology development for over ten years. We describe technology demonstrations of increasing complexity, including mounting of gratings to frames, alignment, environmental testing, integration into arrays, and performance under x-ray illumination with SPOs, using methods proposed for the manufacture of the Arcus spectrometers. CAT gratings have demonstrated efficiency > 30%. Measurements of the 14th order Mg-K_(α1,2) doublet from a co-aligned array of four CAT gratings illuminated by two co-aligned SPOs matches ray trace predictions and exceeds Arcus resolving power requirements. More than 700 CAT gratings will be produced using high-volume semiconductor industry tools and special techniques developed at MIT.
机译:弓是选择了美国航空航天局阶段A概念研究高分辨率软X射线能谱中型资源管理器的任务。它的目的是通过热重子分布,从黑洞反馈的测量,以探索结构的形成,和分的形成和演化,磁盘和外行星大气压。该设计提供了在1.2-5纳米波长带与有效面积空前的灵敏度高达350 cm〜2的和光谱分辨率R> 2500。弓技术是基于高度模块化设计,其具有12间焦距硅孔隙光学(SPO)为欧洲雅典娜任务开发的,临界角传输(CAT)的X射线衍射光栅和在麻省理工学院开发的X射线的CCD。 CAT光栅闪耀已根据技术的发展了十几年的透射光栅。我们描述增加的复杂性,包括光栅的安装到框架,对准,环境测试,集成成阵列的技术展示,和性能下的X射线照射用SPOS,使用提出了弓光谱仪的制造方法。 CAT光栅已证明效率> 30%。第14顺序的Mg-K_(α1,2)是由两个共对齐战略性计划目标照明四个CAT光栅共对齐阵列双峰的测量相匹配光线轨迹预测和超过弓分辨能力的要求。超过700个CAT光栅将使用高容量半导体行业的工具,并在麻省理工学院开发的特殊技术来生产。

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