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Grid search in stellar parameters: a software for spectrum analysis of single stars and binary systems

机译:恒星参数中的网格搜索:用于单星和双星系统频谱分析的软件

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Context. The currently operating space missions, as well as those that will be launched in the near future, will deliver high-quality data for millions of stellar objects. Since the majority of stellar astrophysical applications still (at least partly) rely on spectroscopic data, an efficient tool for the analysis of medium- to high-resolution spectroscopy is needed. Aims. We aim at developing an efficient software package for the analysis of medium- to high-resolution spectroscopy of single stars and those in binary systems. The major requirements are that the code should have a high performance, represent the state-of-the-art analysis tool, and provide accurate determinations of atmospheric parameters and chemical compositions for different types of stars. Methods. We use the method of atmosphere models and spectrum synthesis, which is one of the most commonly used approaches for the analysis of stellar spectra. Our Grid Search in Stellar Parameters (gssp) code makes use of the Message Passing Interface (OpenMPI) implementation, which makes it possible to run in parallel mode. The method is first tested on the simulated data and is then applied to the spectra of real stellar objects. Results. The majority of test runs on the simulated data were successful in that we were able to recover the initially assumed sets of atmospheric parameters. We experimentally find the limits in signal-to-noise ratios of the input spectra, below which the final set of parameters is significantly affected by the noise. Application of the gssp package to the spectra of three Kepler stars, KIC?11285625, KIC?6352430, and KIC?4931738, was also largely successful. We found an overall agreement of the final sets of the fundamental parameters with the original studies. For KIC?6352430, we found that dependence of the light dilution factor on wavelength cannot be ignored, as it has a significant impact on the determination of the atmospheric parameters of this binary system. Conclusions. The gssp software package is a compilation of three individual program modules suitable for spectrum analysis of single stars and individual binary components. The code is highly effective and can be used for spectrum analysis of large samples of stars.
机译:上下文。当前正在运行的太空任务以及将在不久的将来发射的太空任务将为数百万个恒星物体提供高质量的数据。由于大多数恒星天体物理应用仍(至少部分地)依赖于光谱数据,因此需要一种有效的工具来分析中高分辨率光谱。目的我们旨在开发一种高效的软件包,用于分析单星和双星系统中到高分辨率的光谱。主要要求是该代码应具有高性能,代表最先进的分析工具,并能准确确定不同类型恒星的大气参数和化学成分。方法。我们使用大气模型和光谱合成的方法,这是用于恒星光谱分析的最常用方法之一。我们在“恒星参数”(gssp)代码中的网格搜索利用了消息传递接口(OpenMPI)的实现,这使得可以在并行模式下运行。该方法首先在模拟数据上进行测试,然后应用于真实恒星物体的光谱。结果。在模拟数据上进行的大多数测试都是成功的,因为我们能够恢复最初假定的大气参数集。我们通过实验找到输入频谱的信噪比极限,在该极限之下,最终参数集会受到噪声的显着影响。 gssp软件包在三个开普勒星KIC?11285625,KIC?6352430和KIC?4931738的光谱中的应用也大获成功。我们发现基本参数的最终集合与原始研究完全一致。对于KIC?6352430,我们发现光稀释系数对波长的依赖性不容忽视,因为它对确定该二元系统的大气参数有重大影响。结论。 gssp软件包是三个独立程序模块的汇编,适用于单星和独立双星成分的频谱分析。该代码非常有效,可用于对大型恒星样本进行频谱分析。

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