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Laboratory calibration of the Extreme-Ultraviolet Imaging Spectrometer for the Solar-B satellite

机译:用于Solar-B卫星的极紫外成像光谱仪的实验室校准

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摘要

The laboratory end-to-end testing of the Extreme-Ultraviolet Imaging Spectrometer (EIS) for the Solar-B satellite is reported. A short overview of the EIS, which observes in two bands in the extreme-ultraviolet wavelength range, is given. The calibration apparatus is described, including details of the light sources used. The data reduction and analysis procedure are outlined. The wavelength calibration using a Penning source to illuminate the aperture fully is presented. We discuss the aperture determination using a radiometrically calibrated hollow-cathode-based source. We then give an account of the predicted and measured efficiencies from consideration of the efficiencies of individual optical elements in first order, an account of efficiencies out of band when radiation incident in one band is detected in the other, and efficiencies in multiple orders. The efficiencies measured in first order for in band and out of band are compared with the predictions and the sensitivity, and its uncertainties are derived. Application of the radiometric calibration is discussed.
机译:据报道,实验室中对Solar-B卫星的极端紫外成像光谱仪(EIS)进行了端到端测试。给出了EIS的简短概述,该EIS在极紫外波长范围内的两个波段中观察到。描述了校准设备,包括所使用的光源的细节。概述了数据缩减和分析过程。提出了使用Penning源完全照射光圈的波长校准。我们讨论使用辐射校准的基于空心阴极的光源进行孔径确定。然后,我们从一阶考虑单个光学元件的效率,当在一个频带中检测到入射在另一个频带中的辐射入射时带外的效率以及在多个阶中的效率考虑了预测和测量的效率。将带内和带外一级测量的效率与预测值和灵敏度进行比较,得出其不确定性。讨论了辐射定标的应用。

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