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首页> 外文期刊>Astronomy and astrophysics >High-precision acoustic helium signatures in 18 low-mass low-luminosity red giants - Analysis from more than four years of Kepler observations
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High-precision acoustic helium signatures in 18 low-mass low-luminosity red giants - Analysis from more than four years of Kepler observations

机译:18个低质量,低发​​光度的红色巨星中的高精度声氦信号-四年以上开普勒观测的分析

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Context. High-precision frequencies of acoustic modes in red giant stars are now available thanks to the long observing length and high quality of the light curves provided by the NASA Kepler mission, thus allowing the interior of evolved cool low-mass stars to be probed with an unprecedented level of detail. Aims. We characterize the acoustic signature of the helium second ionization zone in a sample of 18 low-mass low-luminosity red giants by exploiting new mode-frequency measurements derived from more than four years of Kepler observations. Methods. We analyzed the second frequency differences of radial acoustic modes in all the stars of the sample by using the Bayesian code Diamonds. Results. We find clear acoustic glitches due to the signature of helium second ionization in all the stars of the sample. We could measure the acoustic depth and the characteristic width of the acoustic glitches with a precision level on average around ~2% and ~8%, respectively. We find good agreement with theoretical predictions and existing measurements from the literature. Finally, we derive the amplitude of the glitch signal at νmax for the second differences and for the frequencies with an average precision of ~6%, obtaining values in the range 0.14?0.24?μHz and 0.08?0.33?μHz, respectively, which can be used to investigate the helium abundance in the stars.
机译:上下文。由于NASA开普勒任务提供了长的观测长度和高质量的光曲线,现在可以使用红色巨型恒星的高精度声模频率,从而可以用一个超大质量的低质量恒星进行探测。前所未有的细节水平。目的我们利用来自开普勒四年多来的观测结果得出的新模式频率测量结果,对18个低质量,低发​​光度的红色巨星样本中的氦第二电离区的声学特征进行了表征。方法。我们使用贝叶斯代码Diamonds分析了样品所有恒星中径向声学模式的第二频率差。结果。由于样品中所有恒星都有氦第二电离的信号,我们发现了清晰的声波干扰。我们可以分别以平均大约2%和8%左右的精确度来测量声学毛刺的声学深度和特征宽度。我们发现与理论预测和文献中已有的测量方法吻合良好。最后,我们针对第二个差异和平均精度约为6%的频率得出νmax处的毛刺信号幅度,分别获得0.14?0.24?μHz和0.08?0.33?μHz范围内的值,这可以用于研究恒星中的氦气丰度。

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