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An Extreme Ultraviolet Optics-Free Spectrometer With Improved Spectral Resolution and High Signal-to-Noise Ratio

机译:具有改善的光谱分辨率和高信噪比的极紫外无光学光谱仪

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A computer model of an Extreme Ultraviolet (EUV) spectrometer based on a gas ionization chamber and on flight experience of the Optics Free Spectrometer (OFS previously flown), was built and tested with the SIMulation of IONs (SIMION) tools. Our goal in this work was to design an improved and simplified electron beam focusing system which fits the dimensions (D = 180 mm; L = 380 mm) available for installation of a new OFS instrument in our sounding rocket flights, and to lower the focusing potentials from the 5,000 V in the previous OFS computer model to about 300 V in the current model. The advanced EUV OFS employs a six-electrode electron beam focusing system with focusing potentials of up to 250 V and can focus photo-electrons in a spectral range of 5.0 - 50.0 nm. The spectral resolution may be optimized throughout the whole spectral range by switching to an appropriate set of focusing potentials resulting in a resolution of about 0.10-0.25 nm, which is comparable to or better than the spectral resolution of typical EUV grating spectrometers designed for spaceflight applications. Modeled focusing of photo-electrons at the detector's aperture permits an increase in both spectral resolution and Signal to Noise Ratio (SNR) compared to those obtained with the dual-electrode OFS prototypes flown previously. A comparison of measured OFS EUV spectra (sounding rocket flight of 2003/12/05) with the modeled spectra showed that an advanced OFS for studying solar dynamics in the EUV with high spectral and temporal resolution is indeed quite feasible.
机译:建立了基于气体电离室的极端紫外(EUV)光谱仪的计算机模型,并基于离子自由光谱仪(OFS)的飞行经验,并使用离子模拟(SIMION)工具进行了测试。我们在这项工作中的目标是设计一种改进和简化的电子束聚焦系统,使其适合于在探空火箭飞行中安装新的OFS仪器时可用的尺寸(D = 180 mm; L = 380 mm)。电位从以前的OFS计算机模型中的5,000 V到当前模型中的约300V。先进的EUV OFS采用六电极电子束聚焦系统,聚焦电位高达250 V,并且可以在5.0-50.0 nm的光谱范围内聚焦光电子。通过切换到一组合适的聚焦电位,可以在整个光谱范围内优化光谱分辨率,从而获得约0.10-0.25 nm的分辨率,该分辨率与为航天应用设计的典型EUV光栅光谱仪的光谱分辨率相当或更好。 。与以前飞行的双电极OFS原型相比,在探测器孔径处对光电子进行建模聚焦可以提高光谱分辨率和信噪比(SNR)。将测得的OFS EUV光谱(探测到的2003年12月5日的火箭飞行)与建模光谱进行比较表明,用于研究EUV中具有高光谱和时间分辨率的太阳动力学的先进OFS确实是相当可行的。

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