首页> 外文期刊>The Astrophysical Journal. Supplement Series >GRAVITY-MODE PERIOD SPACINGS AS A SEISMIC DIAGNOSTIC FOR A SAMPLE OF gamma DORADUS STARS FROM KEPLER SPACE PHOTOMETRY AND HIGH-RESOLUTION GROUND-BASED SPECTROSCOPY
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GRAVITY-MODE PERIOD SPACINGS AS A SEISMIC DIAGNOSTIC FOR A SAMPLE OF gamma DORADUS STARS FROM KEPLER SPACE PHOTOMETRY AND HIGH-RESOLUTION GROUND-BASED SPECTROSCOPY

机译:重力模式时间间隔作为地震诊断的开普勒空间光度法和高分辨率地基光谱学的示例

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摘要

Gamma Doradus stars (hereafter gamma Dor stars) are gravity-mode pulsators of spectral type A or F. Such modes probe the deep stellar interior, offering a detailed fingerprint of their structure. Four-year high-precision space-based Kepler photometry of gamma Dor stars has become available, allowing us to study these stars with unprecedented detail. We selected, analyzed, and characterized a sample of 67 gamma Dor stars for which we have Kepler observations available. For all the targets in the sample we assembled high-resolution spectroscopy to confirm their F-type nature. We found fourteen binaries, among which are four single-lined binaries, five double-lined binaries, two triple systems, and three binaries with no detected radial velocity variations. We estimated the orbital parameters whenever possible. For the single stars and the single-lined binaries, fundamental parameter values were determined from spectroscopy. We searched for period spacing patterns in the photometric data and identified this diagnostic for 50 of the stars in the sample, 46 of which are single stars or single-lined binaries. We found a strong correlation between the spectroscopic nu sin i and the period spacing values, confirming the influence of rotation on gamma Dor-type pulsations as predicted by theory. We also found relations between the dominant g-mode frequency, the longest pulsation period detected in series of prograde modes, nu sin i, and log T-eff.
机译:伽玛多拉第斯星(以下称伽玛多尔星)是光谱类型为A或F的重力模式脉动器。此类模式探测深恒星内部,提供其结构的详细指纹。伽玛多尔恒星的四年高精度基于太空的开普勒光度法已经可用,这使我们能够以前所未有的细节研究这些恒星。我们选择,分析和表征了67个伽玛多尔星的样本,对此我们可以进行开普勒观测。对于样品中的所有目标,我们组装了高分辨率光谱仪以确认其F型性质。我们发现了十四个二进制,其中四个是单行二进制,五个双行二进制,两个三重系统和三个二进制,没有检测到径向速度变化。我们尽可能估算轨道参数。对于单星和单线双星,基本参数值由光谱法确定。我们在光度数据中搜索了周期间隔模式,并针对样品中的50个恒星确定了此诊断,其中46个是单星或单行双星。我们发现光谱的nu sin i与周期间隔值之间具有很强的相关性,证实了旋转对理论所预测的伽玛多尔型脉动的影响。我们还发现了显性g模式频率,一系列顺行模式中检测到的最长脉动周期,nu sin i和log T-eff之间的关系。

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