论文标题
PBJAM:一种用于自动化太阳能振荡器的星星学学的Python包装
PBjam: A Python package for automating asteroseismology of solar-like oscillators
论文作者
论文摘要
Asterosology是使用观察到的振荡模式的特性研究恒星的特殊工具。到目前为止,对恒星进行小催化性分析的过程仍然有些深奥,而对非专家来说是无法访问的。在本软件论文中,我们描述了PBJAM,这是一种开源Python软件包,用于以简单但原则性和自动化的方式分析太阳能振荡器的频谱。 PBJAM的目的是提供一组易于使用的工具,以提取有关像太阳一样振荡的恒星中的径向和四极振荡的信息,然后可以用来将其用于下散装特性,例如恒星质量,半径和年龄甚至结构。随着空间的光度观测值正在产生大量新数据,可以在诸如系外行星,恒星结构和进化和银河系研究等各种环境中应用星星志学,因此,星空学及其数据分析方法变得越来越重要。
Asteroseismology is an exceptional tool for studying stars by using the properties of observed modes of oscillation. So far the process of performing an asteroseismic analysis of a star has remained somewhat esoteric and inaccessible to non-experts. In this software paper we describe PBjam, an open-source Python package for analyzing the frequency spectra of solar-like oscillators in a simple but principled and automated way. The aim of PBjam is to provide a set of easy-to-use tools to extract information about the radial and quadrupole oscillations in stars that oscillate like the Sun, which may then be used to infer bulk properties such as stellar mass, radius and age or even structure. Asteroseismology and its data analysis methods are becoming increasingly important as space-based photometric observatories are producing a wealth of new data, allowing asteroseismology to be applied in a wide range of contexts such as exoplanet, stellar structure and evolution, and Galactic population studies.