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Automatic Normalization and Equivalent-Width Measurement of High-Resolution Stellar Spectra

机译:高分辨率恒星光谱的自动归一化和等效宽度测量

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It is well known that normalization, radial velocity correction and equivalent-width measurement of high-resolution stellar spectra are time-consuming work. In order to improve the efficiency we present an automatic method for these routines. The continuum is determined by fitting the 'high points' in the spectrum. After continuum normalization, the program automatically searches for the position of the Ha line and obtains a rough radial velocity, then computes an accurate radial velocity by cross-correlation between the given spectrum and the solar spectrum. In this method, the equivalent-width is automatically measured using Gaussian fitting. A comparison between our results and those from traditional analysis shows that the typical error for equivalent width is around 3.8% in our method. Developing such automatic routines does not mean to replace the interactive reduction method: it is just for a quick extraction of information from the spectra, especially those obtained in large sky surveys.
机译:众所周知,高分辨率恒星光谱的归一化,径向速度校正和等效宽度测量是耗时的工作。为了提高效率,我们提出了这些例程的自动方法。通过拟合光谱中的“高点”来确定连续体。进行连续统归一化后,程序将自动搜索Ha线的位置并获得大致的径向速度,然后通过给定光谱与太阳光谱之间的互相关来计算准确的径向速度。在这种方法中,等效宽度是使用高斯拟合自动测量的。将我们的结果与传统分析的结果进行比较表明,在我们的方法中,等效宽度的典型误差约为3.8%。开发此类自动例程并不意味着要取代交互式归约方法:它只是用于从光谱中快速提取信息,尤其是在大型天空勘测中获得的信息。

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