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Intercalibration of SUMER and CDS on SOHO. III. SUMER and CDS-GIS

机译:SUHO和CDS在SOHO上的相互校准。三, SUMER和CDS-GIS

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Simultaneous observation of the same solar sources with different instruments is one way to test prelaunch radiometric calibrations and to detect changes in responsivity with time of extreme-ultraviolet instruments in space. Here we present the results of intercalibration of the SUMER (Solar Ultraviolet Measurements of Emitted Radiation) spectrometer (detectors A and B) and the GIS (Grazing Incidence Spectrometer), one of two spectrometers that compose the CDS (Coronal Diagnostic Spectrometer) on the Solar and Heliospheric Observatory (SOHO). The two instruments observed simultaneously radiances of emission lines at or near the center of the solar disk. The emission line chosen for intercomparison was Ne viii at 770 A. However, such an intercomparison of the SUMER and CDS-GIS measurements means comparing two data sets with large differences in resolution and field of view. The latter difference, especially, introduces differences in the measured intensities caused by the solar variability that is relatively strong in the 770-A line. Using a statistical approach to overcome this problem, we found that the ratio of the GIS to the SUMER average radiances amounted to 2.6±0.9 before the SOHO's loss of attitude and to 2.1±0.7 afterward. These findings confirm earlier estimates of the GIS's responsivity being too low, and an update of the GIS calibration is recommended. Despite the large differences in resolution and field of view of the two instruments, the shapes of their normalized and rescaled histograms of the radiances agree well and therefore represent characteristic features of the Ne viii line.
机译:用不同的仪器同时观测相同的太阳能是测试发射前辐射定标并检测太空中极紫外仪器随时间变化的响应度的一种方法。在这里,我们介绍了SUMER(发射辐射的太阳能紫外线测量)光谱仪(探测器A和B)和GIS(掠入射光谱仪)的相互校准结果,这两个光谱仪组成了太阳能上的CDS(冠状诊断光谱仪)以及天文台(SOHO)。这两台仪器同时观测了太阳盘中心处或附近的发射线的辐射。选择用于比对的发射谱线是770 A时的Ne viii。但是,这种SUMER和CDS-GIS测量的比对意味着要比较分辨率和视野差异很大的两个数据集。尤其是后者的差异会引入由770-A系列中相对强烈的太阳变化引起的测量强度差异。通过统计方法克服了这个问题,我们发现GIS与SUMER平均辐射率之比在SOHO态度丧失之前为2.6±0.9,之后为2.1±0.7。这些发现证实了先前对GIS响应度的估计过低,因此建议更新GIS校准。尽管这两种仪器的分辨率和视野差异很大,但它们的辐射度的归一化和重新缩放的直方图形状十分吻合,因此代表了Ne viii谱线的特征。

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