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The Interior Angular Momentum of Core Hydrogen Burning Stars from Gravity-mode Oscillations

机译:来自重力模式振荡的核心氢气恒星的内部角动量

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A major uncertainty in the theory of stellar evolution is the angular momentum distribution inside stars and its change during stellar life. We compose a sample of 67 stars in the core hydrogen burning phase with a log g value from high-resolution spectroscopy, as well as an asteroseismic estimate of the near-core rotation rate derived from gravity-mode oscillations detected in space photometry. This assembly includes 8 B-type stars and 59 AF-type stars, covering a mass range from 1.4 to 5M_⊙, i.e., it concerns intermediate-mass stars born with a well-developed convective core. The sample covers projected surface rotation velocities v sin i ∈ [9, 242] km s~(-1) and core rotation rates up to 26 μHz, which corresponds to 50% of the critical rotation frequency. We find deviations from rigid rotation to be moderate in the single stars of this sample. We place the near-core rotation rates in an evolutionary context and find that the core rotation must drop drastically before or during the short phase between the end of the core hydrogen burning and the onset of core helium burning. We compute the spin parameter, which is the ratio of twice the rotation rate to the mode frequency (also known as the inverse Rossby number), for 1682 gravity modes and find the majority (95%) to occur in the sub-inertial regime. The 10 stars with Rossby modes have spin parameters between 14 and 30, while the gravito-inertial modes cover the range from 1 to 15.
机译:恒星演化理论中的一个重大不确定性是恒星生活中的角动量分布及其变化。我们在核心燃烧相中撰写67颗恒星的样本,具有来自高分辨率光谱的LOG G值,以及从空间测光法中检测到的重力模式振荡导出的近核旋转速率的波动姿态估计。该组件包括8个B型恒星和59个AF型恒星,覆盖物质量范围为1.4至5MΩ,即,它涉及具有良好发育良好的对流芯的中间质量恒星。样品覆盖投影表面旋转速度V SinI∈[9,242] Km S〜(-1)和高达26μHz的核旋转速率,其对应于临界旋转频率的50%。我们发现刚性旋转的偏差在该样品的单星中温和。我们将近核旋转速率放在进化的背景下,并发现核心旋转必须在核心燃烧结束和核心氦气燃烧的结束之间或在短阶段之前或在短相之间下降。我们计算旋转参数,这是旋转速率的两倍于模式频率的比率(也称为逆rossby编号),对于1682重力模式,并找到亚惯性制度中的大多数(95%)。带有罗斯比模式的10颗恒星在14和30之间具有旋转参数,而Gravito-惯性模式覆盖1至15的范围。

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