用于高分辨率天体物理极紫外光谱的正入射多层衍射光栅

Xiaowei Yang, I. Kozhevnikov, Qiushi Huang, De-chao Xu, Jiang Li, Zhong Zhang, Zhanshan Wang
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摘要

基于正入射多层衍射光栅技术的高分辨率极紫外光谱任务,提供了较高的有效面积和光谱分辨率,可以对银河系本地恒星和白矮星目标进行巡天。与放牧系统相比,这种方法允许以低成本的方式提供以前的观测级科学。该仪器已经在两次亚轨道太空飞行中得到了验证。然而,以前使用的多层是周期性的,工作带通是有限的。本文在17.5nm ~ 25.0nm波长范围内用三种多层膜模拟了正入射多层衍射光栅的光谱特性,其中包括在较冷的(类太阳)日冕中最强的Fe VIII ~ XIII谱线,以及较弱的O、Si、S和Ar谱线。采用周期性多层膜可以在带通中心波长处获得最高的效率。如果我们使用非周期多层,则可以获得最平坦的响应效率。仿真结果表明,多层膜的选择取决于光谱任务的要求,应慎重考虑。
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The normal-incidence multilayered diffraction grating for the high resolution astrophysical extreme ultraviolet spectroscopy
The high resolution extreme ultraviolet spectroscopy mission based on the normal-incidence multilayered diffraction grating technology, which provides high effective area and spectral resolution, can carry out a survey of local Galactic stellar and white dwarf targets. Compared to grazing-incidence systems, this approach allows previous observatory-class science to be delivered in a low-cost package. The instrument has already been proven in two sub-orbital space flights. However, the multilayer used before is periodic one and the working band-pass is limited. In this paper, the spectroscopic properties of a normal-incidence multilayered diffraction grating were simulated with three kinds multilayers for the wavelength range between 17.5nm and 25.0nm, which includes lines of Fe VIII to XIII that will be strongest in the cooler (solar like) coronae, plus some weaker lines of O, Si, S and Ar. The highest efficiency at central wavelength of band-pass can be obtained if the periodic multilayer is adopted. The most flat response efficiency can be achieved if we utilized a non-periodic multilayer. The simulation results demonstrated that the choice of the multilayer is dependent on the requirement to the spectroscopy mission and should be considered carefully.
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