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Asteroseismology of 19 low-luminosity red giant stars from Kepler

机译:开普勒的19个低发光度红色巨星的星震学

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Context. Frequencies of acoustic and mixed modes in red giant stars are now determined with high precision thanks to the long continuous observations provided by the NASA’s Keplermission. Here we consider the eigenfrequencies of nineteen low-luminosity red giant stars selected in a recent publication for a detailed peak-bagging analysis. Aims. Our objective is to obtain stellar parameters by using individual mode frequencies and spectroscopic information. Methods. We use a forward modelling technique based on a minimization procedure combining the frequencies of the p -modes, the period spacing of the dipolar modes, and the spectroscopic data. Results. Consistent results between the forward modelling technique and values derived from the seismic scaling relations are found but the errors derived using the former technique are lower. The average error for log? g is 0.002 dex, compared to 0.011 dex from the frequency of maximum power, ν _(max) , and 0.10 dex from the spectroscopic analysis. Relative errors in the masses and radii are on average 2% and 0.5% respectively, compared to 3% and 2% derived from the scaling relations. No reliable determination of the initial helium abundances and the mixing length parameters could be made. Finally, for our grid of models with given input physics, we found that low-mass stars require higher values of the overshooting parameter.
机译:上下文。由于美国国家航空航天局(NASA)开普勒米特(Keplermission)提供的长时间连续观测,现在可以高精度确定红色巨星的声学和混合模频率。在这里,我们考虑在最近的出版物中选择的19个低发光度红色巨星的本征频率,用于详细的峰袋分析。目的我们的目标是通过使用各个模式频率和光谱信息来获得恒星参数。方法。我们使用基于最小化过程的前向建模技术,该过程将p模式的频率,偶极模式的周期间隔和光谱数据结合在一起。结果。发现前向建模技术与从地震比例关系导出的值之间的结果一致,但是使用前一种技术导出的误差较低。日志的平均错误? g为0.002 dex,而最大功率频率ν_(max)为0.011 dex,而光谱分析为0.10 dex。质量和半径的相对误差平均分别为2%和0.5%,而比例关系则为3%和2%。无法可靠地确定初始氦气丰度和混合长度参数。最后,对于具有给定输入物理学的模型网格,我们发现低质量恒星需要更高的超调参数值。

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