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Resolving the Effects of Rotation in Early Type Stars

机译:解决早期型恒星自转的影响

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We review the theory of rotating stars, first developed 80 years ago. Predictions include a specific relation between shape and angular velocity and between surface location and effective temperature and effective gravity. Seen at arbitrary orientation rapidly rotating stars will display ellipsoidal shapes and possibly quite asymmetric intensity distributions. The flattening due to rotation has recently been detected at PTI and VLTI. With the increasing baselines available in the visible and the implementation of closure phase measurements at the NPOI it is now possible to search for the surface brightness effects of rotation. Roche theory predicts only large scale deviations from the usual centro-symmetric limb-darkened models, ideal when the stellar disks are only coarsely imaged as now. We report here observations of Altair and Vega with the NPOI using baselines that detect fringes beyond the first Airy zero in both objects. Asymmetric, non-classical intensity distributions are detected. Both objects appear to be rotating at a large fraction of their breakup velocity. Vega is nearly pole on, accounting for its low apparent rotational velocity. Altair's inclination is intermediate, allowing high S/N detection of all the predicted features of a Roche spheroid. We describe how these objects will test this fundamental theory and how Vega's role as a standard will need reinterpretation.
机译:我们回顾80年前首次发展的旋转恒星理论。预测包括形状和角速度之间以及表面位置与有效温度和有效重力之间的特定关系。从任意方向看,快速旋转的恒星将显示椭圆形状,强度分布可能很不对称。最近在PTI和VLTI检测到由于旋转而导致的扁平化。随着可见光基线的增加以及在NPOI实施封闭相测量,现在可以搜索旋转的表面亮度影响。罗氏(Roche)理论预测,与通常的中心对称肢体变暗模型相比,只有较大比例的偏差,当恒星盘仅像现在这样粗略成像时,这是理想选择。我们在此报告使用NPOI的Altair和Vega观测值,该基线使用检测两个物体中第一个Airy零以外的条纹的基线。检测到不对称的非经典强度分布。两个物体似乎都以其破碎速度的很大一部分旋转。 Vega几乎处于极压状态,这是因为它的视在转速较低。 Altair的倾斜度中等,可以对Roche球体的所有预测特征进行高信噪比检测。我们描述了这些对象如何检验这一基本理论,以及维加作为标准的作用将如何重新解释。

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