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Critical-angle x-ray transmission grating spectrometer with extended bandpass and resolving power > 10,000

机译:临界角X射线传输光谱仪,具有扩展带通和分辨率> 10,000

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A number of high priority subjects in astrophysics can be addressed by a state-of-the-art soft x-ray grating spectrometer, such as the role of Active Galactic Nuclei in galaxy and star formation, characterization of the Warm-Hot Intergalactic Medium and the missing baryon problem, characterization of halos around the Milky Way and nearby galaxies, as well as stellar coronae and surrounding winds and disks. An Explorer-scale, large-area (> 1,000 cm~2), high resolving power (R = λ/Δλ > 3,000) soft x-ray grating spectrometer is highly feasible based on Critical-Angle Transmission (CAT) grating technology, even for telescopes with angular resolution of 5-10 arcsec. Still, significantly higher performance can be provided by a CAT grating spectrometer on an X-ray-Surveyor-type mission. CAT gratings combine the advantages of blazed reflection gratings (high efficiency, use of higher diffraction orders) with those of conventional transmission gratings (low mass, relaxed alignment tolerances and temperature requirements, transparent at higher energies) with minimal mission resource requirements. They are high-efficiency blazed transmission gratings that consist of freestanding, ultra-high aspect-ratio grating bars fabricated from silicon-on-insulator (SOI) wafers using advanced anisotropic dry and wet etch techniques. Blazing is achieved through grazing-incidence reflection off the smooth grating bar sidewalls. The reflection properties of silicon are well matched to the soft x-ray band, and existing silicon CAT gratings can exceed 30% absolute diffraction efficiency, with clear paths for further improvement. Nevertheless, CAT gratings with sidewalls made of higher atomic number elements allow extension of the CAT grating principle to higher energies and larger dispersion angles, thus enabling higher resolving power at shorter wavelengths. We show x-ray data from CAT gratings coated with a thin layer of platinum using atomic layer deposition, and demonstrate efficient blazing to higher energies and much larger blaze angles than possible with silicon alone. We also report on measurements of the resolving power of a breadboard CAT grating spectrometer consisting of a Wolter-I slumped-glass focusing mirror pair from Goddard Space Flight Center and CAT gratings, performed at the Marshall Space Flight Center Stray Light Facility. Measurement of the Al K_α doublet in 18th diffraction order shows resolving power > 10,000, based on conservative preliminary analysis. This demonstrates that currently fabricated CAT gratings are compatible with the most advanced grating spectrometer instrument designs for future soft x-ray spectroscopy missions.
机译:在天体物理学一些高优先级的受试者可以通过一个国家的最先进的软X射线光栅光谱仪来解决,如活动星系核的星系和恒星形成温热际介质和作用,表征失踪重子问题,围绕银河系和邻近星系光晕,以及恒星日冕和周围的风和磁盘的表征。一个资源管理大规模,大面积(>千厘米〜2),高分辨力(R =λ/Δλ> 3000)软X射线光栅光谱仪是基于临界角传播(CAT)光栅技术,即使是高度可行对于具有5-10弧秒的角度分辨率望远镜。尽管如此,显著更高的性能可以通过在X射线测量师型任务一个CAT光栅光谱仪来提供。 CAT光栅与常规透射光栅(低质量,轻松对准公差和温度的要求,在较高能量透明的)以最小的任务的资源要求结合闪耀反射光栅的优点(高效率,使用较高的衍射级)。它们是由独立的高效率的闪耀透射光栅,超高纵横比光栅条使用先进的各向异性干法和湿法蚀刻技术硅绝缘体(SOI)晶片制造。炽热通过掠入射反射落平稳光栅条的侧壁实现。硅的反射特性良好匹配到软X射线带和现有硅CAT光栅可以超过30%的绝对衍射效率,以进一步改进的畅通路径。然而,与由较高原子数的元素的侧壁CAT光栅允许CAT光栅原理更高的能量和更大的色散角的延伸,从而在较短的波长,可实现更高的分辨率。我们显示从涂覆有使用原子层沉积铂的薄层CAT光栅的X射线数据,并证明有效的炽热到更高的能量和更大的闪耀角比可能单独用硅。我们还对光栅光谱仪组成的线路板CAT的分辨能力的测量报告沃尔特 - 我呆呆玻璃聚焦镜对来自戈达德太空飞行中心和CAT光栅,马歇尔航天飞行中心杂散光设施进行。铝K_α的测量在18级衍射显示分辨率> 10,000双峰,基于保守的初步分析。这表明,目前制造的CAT光栅是用最先进的光栅光谱仪设计为未来的软X射线光谱任务兼容。

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