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首页> 外文期刊>Applied optics >FAR-ULTRAVIOLET SPECTROGRAPHS - THE IMPACT OF HOLOGRAPHIC GRATING DESIGN
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FAR-ULTRAVIOLET SPECTROGRAPHS - THE IMPACT OF HOLOGRAPHIC GRATING DESIGN

机译:远紫外光谱图-全息光栅设计的影响

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摘要

One of NASA's major scientific initiatives in astrophysics, the Far Ultraviolet Spectroscopic Explorer, is an orbiting observatory designed to perform high-resolution spectroscopy of stellar objects between 910 and 1150 Angstrom. To achieve the 100 cm(2) of effective area required to observe faint quasars, the mission has adopted an unconventional design that couples grazing-incidence Welter optics and an aberration-corrected Rowland circle spectrograph. The projected cost of the satellite has, however, become very high, driven in large part by the cost of the grazing optics and the side effects of compensating for their relatively poor performance. The logic that leads to the current design is reanalyzed, and it is argued that because of the technical developments of the last 7 years, grazing incidence is no longer the most attractive alternative. In particular, the application of aberration-corrected, spherical substrate, holographic gratings now greatly simplifies the design and thereby reduces the cost. A new design is presented that substantially outperforms the old and that is easier to fabricate. [References: 19]
机译:远紫外线光谱浏览器是美国宇航局在天体物理学方面的一项重大科学举措之一,它是一个轨道天文台,旨在对910至1150埃之间的恒星物体执行高分辨率光谱。为了达到观察微弱类星体所需的100 cm(2)的有效面积,任务采用了一种非常规设计,该设计将掠入射威尔特光学器件和像差校正的罗兰圆光谱仪结合在一起。但是,卫星的预计成本已经很高,这在很大程度上是由于掠射光学系统的成本以及补偿其相对较差的性能所带来的副作用。重新分析了导致当前设计的逻辑,并且认为由于最近7年的技术发展,放牧发生率不再是最有吸引力的选择。特别地,现在使用像差校正的球形衬底全息光栅极大地简化了设计,从而降低了成本。提出了一种新设计,该设计大大优于旧设计,并且更易于制造。 [参考:19]

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