论文标题

太阳耀斑诊断研究的独特资源:SMM弯曲晶体光谱仪

A Unique Resource for Solar Flare Diagnostic Studies: the SMM Bent Crystal Spectrometer

论文作者

Sylwester, J., Sylwester, B., Phillips, K. J. H., Kepa, A., Rapley, C. G.

论文摘要

NASA太阳最大任务航天器上的弯曲晶体光谱仪(BCS)观察到1980年2月至11月和1984年的1980年和1989年的X射线光谱。该仪器是使用弯曲的晶体技术的第一个仪器,观察到了He样CA(\ caxix)和Fe(\ fexxv)和相邻的卫星线的溶液线,从而可以研究耀斑等离子体温度,湍流,质量变化等的快速演变,而迄今为止,没有太阳能固定和时间固定的光谱范围。和不太强烈的耀斑。因此,BCS数据存档为火炬研究提供了无与伦比的资源。在1980年11月〜6的耀斑过程中,通过在航天器扫描期间使用数据来扩展BCS校准及其操作的最新重新评估,该数据突出了重要通道〜1的晶体曲率的小变形(\ caxix \ \ caxix \ and satellites的观察线)。结果解释了过去广泛讨论的光谱线比率长期存在的异常。我们还提供了BCS准直仪视野的机上估计,从而改善了BCS的绝对强度校准。 BCS频道〜1背景完全归因于太阳连续辐射,证实了早期的分析表明CA的时间变化丰度。我们建议BCS高分辨率\ caxix \和\ fexxv \线光谱用作分析非极性源X射线光谱的模板。

The Bent Crystal Spectrometer (BCS) on the NASA Solar Maximum Mission spacecraft observed the X-ray spectra of numerous solar flares during the periods 1980 February to November and 1984~--~1989. The instrument, the first of its kind to use curved crystal technology, observed the resonance lines of He-like Ca (\caxix) and Fe (\fexxv) and neighboring satellite lines, allowing the study of the rapid evolution of flare plasma temperature, turbulence, mass motions etc. To date there has not been a solar X-ray spectrometer with comparable spectral and time resolution, while subsequent solar cycles have delivered far fewer and less intense flares. The BCS data archive thus offers an unparalleled resource for flare studies. A recent re-assessment of the BCS calibration and its operations is extended here by using data during a spacecraft scan in the course of a flare on 1980 November~6 that highlights small deformations in the crystal curvature of the important channel~1 (viewing lines of \caxix\ and satellites). The results explain long-standing anomalies in spectral line ratios which have been widely discussed in the past. We also provide an in-flight estimation of the BCS collimator field of view which improves the absolute intensity calibration of the BCS. The BCS channel~1 background is shown to be entirely due to solar continuum radiation, confirming earlier analyses implying a time-variable flare abundance of Ca. We suggest that BCS high-resolution \caxix\ and \fexxv\ line spectra be used as templates for the analysis of X-ray spectra of non-solar sources.

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