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The γ Dor stars as revealed by Kepler: A key to reveal deep-layer rotation in A and F stars

机译:开普勒揭示的γDor恒星:揭示A和F恒星深层旋转的关键

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The γ Dor pulsating stars present high-order gravity modes, which make them important targets in the intermediate-and low-mass main-sequence region of the Hertzsprung-Russell diagram. Whilst we have only access to rotation in the envelope of the Sun, the g modes of γ Dor stars can in principle deliver us constraints on the inner layers. With the puzzling discovery of unexpectedly low rotation rates in the core of red giants, the γ Dor stars appear now as unique targets to explore internal angular momentum transport in the progenitors of red giants. Yet, the γ Dor pulsations remain hard to detect from the ground for their periods are close to 1 day. While the CoRoT space mission first revealed intriguing frequency spectra, the almost uninterrupted 4-year photometry from the Kepler mission eventually shed a new light on them. It revealed regularities in the spectra, expected to bear signature of physical processes, including rotation, in the shear layers close to the convective core. We present here the first results of our effort to derive exploitable seismic diagnosis for mid- to fast rotators among γ Dor stars. We confirm their potential to explore the rotation history of this early phase of stellar evolution.
机译:γDor脉动星呈现高阶重力模式,使其成为Hertzsprung-Russell图的中,低质量主序列区域的重要目标。虽然我们只能在太阳的包层中进行自转,但是γDor星的g模式原则上可以为我们提供对内层的约束。令人费解的发现是,红巨星核心的旋转速度出乎意料地低,因此,γDor星现在已成为探索红巨星祖先内部角动量传输的独特目标。然而,由于它们接近1天的时间,很难从地面上检测到γDor脉动。当CoRoT太空任务首次揭示出令人着迷的频谱时,开普勒任务进行了几乎不间断的4年测光,最终为它们揭开了新的一页。它揭示了光谱中的规律性,有望在靠近对流岩心的剪切层中表现出包括旋转在内的物理过程的特征。我们在这里介绍了我们为γDor星中的中速旋转器进行可利用的地震诊断的努力的第一个结果。我们证实了他们探索恒星演化早期阶段的旋转历史的潜力。

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