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ON THE DETERMINATION OF THE ROTATIONAL OBLATENESS OF ACHERNAR

机译:A骨旋转扁度的测定

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The recent interterometnc study of Achernar, leading to the conclusion that its geometrical oblateness cannot be explained by the Roche approximation, has stirred substantial interest in the community, in view of its potential impact on many fields of stellar astrophysics. It is the purpose of this Letter to reinterpret the interferometric observations with a fast-rotating, gravity-darkened central star surrounded by a small equatorial disk, whose presence is consistent with contemporaneous spectroscopic data. We find that we can fit the available data only assuming a critically rotating central star. We identified two different disk models that simultaneously fit the spectroscopic, polarimetric, and interferometric observational constraints: a tenuous disk in hydrostatic equilibrium (i.e., with small scale height) and a smaller, scale height enhanced disk. We believe that these relatively small disks correspond to the transition region between the photosphere and the circumstellar environment and that they are probably perturbed by some photospheric mechanism. The study of this interface between photosphere and circumstellar disk for near-critical rotators is crucial to our understanding of the Be phenomenon and the mass and angular momentum loss of stars in general. This work shows that it is nowadays possible to directly study this transition region from simultaneous multitechnique observations.
机译:鉴于其对恒星天体物理学许多领域的潜在影响,最近对Achernar进行的层间研究表明,其几何扁率不能用Roche近似解释,因此引起了社会的极大兴趣。这封信的目的是用一个由小赤道圆盘围绕着的快速旋转,变暗的中心星重新解释干涉测量的观测结果,赤道圆盘的存在与当时的光谱数据一致。我们发现只有假定中心恒星处于临界旋转状态,我们才能拟合可用数据。我们确定了两种不同的圆盘模型,它们同时符合光谱,偏振和干涉测量的观察条件:处于静水平衡状态的脆弱圆盘(即标尺高度较小)和标尺高度增强的较小圆盘。我们认为,这些相对较小的盘对应于光球和星际环境之间的过渡区域,并且它们可能会受到某种光球机制的干扰。对于近临界旋转器,光球与星际盘之间的这种界面的研究对于理解Be现象以及一般恒星的质量和角动量损失至关重要。这项工作表明,如今有可能从同时进行的多技术观测中直接研究这一过渡区域。

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