论文标题

使用Kodaikanal天文台的一个世纪长的对比图像来确定CA-K指数的变化和特征的变化

Determining the Variations of Ca-K index and Features using a Century Long Equal Contrast Images from Kodaikanal Observatory

论文作者

Singh, Jagdev, Priyal, Muthu, Ravindra, B.

论文摘要

在早期对Kodaikanal天文台获得的CA-K频谱图的分析中,使用“良好”图像来研究染色体的变化。尽管如此,图像的对比度在日常的情况下也有所不同。我们开发了一种新方法来生成图像以形成统一的时间序列。我们调整了每个图像的对比度,直到归一化强度分布的FWHM达到0.10至0.11之间。预计“相等对比度技术”的这种方法可以弥补乳液的变化,发育,图像的对比度,因为CA-K线在出口缝隙和天空透明度上的中心居中。此外,此过程将纠正不同图像的密度到强度转换的变化。我们发现黑子和CA-K线数据之间的相关性大量改进。例如,相等的对比度数据的每月平均黑子和CA-K板区域之间的相关系数(CC)提高到0.9,而“良好”数据(具有不平等对比度的“良好”数据)为0.75。相等对比度图像的CC从$ \ sim $ \ sim $ 0.46提高到$ \ sim $ 0.78,对于“确定”数据,并具有不平等的对比度。在100年的数据中,即使是板块区域和每日黑子数量之间的CC也是0.85。这种方法还允许我们第一次研究增强,活跃和安静的网络的变化,并在大约一个世纪以来的准确性。此外,该过程可用于结合来自不同观测值的数据以进行长时间序列。

In the earlier analysis of Ca-K spectroheliograms obtained at Kodaikanal Observatory, the "Good" images were used to investigate variations in the chromosphere. Still, the contrast of the images varied on a day-to-day basis. We developed a new methodology to generate images to form a uniform time series. We adjusted each image's contrast until the FWHM of the normalized intensity distribution attained a value between 0.10 and 0.11. This methodology of the "Equal Contrast technique" is expected to compensate for the change of emulsion, development, contrast of the images due to centering of Ca-K line on the exit slit and sky transparency. Besides, this procedure will correct variations in density-to-intensity conversion for different images. We find that the correlation between sunspot and Ca-K line data improves by a large amount. For example, correlation coefficient (CC) between monthly averaged sunspots and Ca-K plage areas for the equal contrast data improves to 0.9 compared to 0.75 for the "Good" data with unequal contrast. The CC for equal contrast images improves to $\sim$0.78 from $\sim$0.46 for the "Okay" data with unequal contrast. Even the CC between the plage area and the daily sunspot number is 0.85 for 100 years of data. This methodology also permits us to study the variations in Enhanced, Active, and Quiet networks with time along with good accuracy for about a century, for the first time. Further, this procedure can be used to combine data from different observatories to make a long time series.

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