Woodgate B E, Lowinger T, Schneider M
Appl Opt. 1973 Nov 1;12(11):2759-64. doi: 10.1364/AO.12.002759.
A crystal spectrometer for rocket and satellite experiments is described. Parallel x rays from a stellar object are reflected at constant angle by Bragg crystals arranged around the sector of a cone so that a single wavelength is brought to a focus onto the axis of the cone. The aberrations produced when this array is tilted to change the wavelength are considered. It is shown that these are minimized by moving cone and detector in a nearly theta-2theta motion and by using a small-angle sector. In a specific design for a satellite instrument using LiF crystal to observe a spectral region including the iron lines at 1.9 A a spectral resolution of 3 mA over a spectral range of 1.6-2.1 A can be obtained, with the cosmic-ray background rate, and hence the time to detect a weak line decreased by a factor 80 compared to a flat crystal spectrometer. Examples of performance for a low energy rocket experiment are also given.
本文描述了一种用于火箭和卫星实验的晶体光谱仪。来自恒星物体的平行X射线以恒定角度被排列在圆锥扇形周围的布拉格晶体反射,从而使单一波长聚焦在圆锥轴上。文中考虑了该阵列倾斜以改变波长时产生的像差。结果表明,通过使圆锥和探测器以近似θ-2θ的运动方式移动,并使用小角度扇形,可以将这些像差最小化。在一种使用LiF晶体的卫星仪器的特定设计中,用于观测包括1.9埃铁线在内的光谱区域,在1.6 - 2.1埃的光谱范围内可获得3毫安的光谱分辨率,与平板晶体光谱仪相比,宇宙射线背景率降低,因此检测弱线的时间减少了80倍。文中还给出了低能火箭实验的性能示例。