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首页> 外文期刊>The Astrophysical journal >THE HYADES BINARY 51 TAURI: SPECTROSCOPIC DETECTION OF THE PRIMARY, THE DISTANCE TO THE CLUSTER, AND THE MASS-LUMINOSITY RELATION
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THE HYADES BINARY 51 TAURI: SPECTROSCOPIC DETECTION OF THE PRIMARY, THE DISTANCE TO THE CLUSTER, AND THE MASS-LUMINOSITY RELATION

机译:Hyades BINARY 51 TAURI:主要分子的光谱检测,到团簇的距离以及质量-光度关系

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摘要

51 Tauri has long been known as a double-lined spectroscopic binary (orbital period = 11 yr) with the peculiarity that only the velocities of the secondary component could be measured. We report here new spectroscopic observations of this system that have enabled us to measure velocities for the rapidly rotating primary using TODCOR, a two-dimensional cross-correlation technique, and we have derived a double-lined orbit. In addition, 51 Tau is a visual binary resolved by speckle interferometry. By combining the astrometric and spectroscopic data, we have obtained the first complete visual-spectroscopic solution for the system, from which we derive the orbital parallax (π_(orb) = 0.0179″ ± 0.0006″) and the individual masses (M_A = 1.80 ± 0.13 solar mass and M_B = 1.46 ± 0.18 solar mass). Based on this orbital parallax, we use relative proper motions for a representative sample of cluster members to obtain a distance modulus for the cluster of m - M = 3.40 ± 0.07 (47.8 ± 1.6 pc). We compare the empirical mass-luminosity relation from all available direct mass determinations with recent theoretical models, and we take advantage of the unusual opportunity that we have absolute luminosities and colors to derive an age estimate of 600 Myr for the Hyades, by comparing with stellar evolution models without any arbitrary adjustments.
机译:51 Tauri长期以来一直被认为是双谱双星光谱仪(轨道周期= 11年),其独特之处在于只能测量次要组分的速度。我们在这里报告该系统的新光谱观测结果,使我们能够使用二维互相关技术TODCOR来测量快速旋转的原边的速度,并且得出了双线轨道。此外,51 Tau是一种通过斑点干涉法解析的视觉二进制文件。通过将天文学和光谱学数据相结合,我们获得了该系统的第一个完整的视觉光谱解决方案,从中我们得出了轨道视差(π_(orb)= 0.0179“±0.0006”)和单个质量(M_A = 1.80± 0.13太阳质量和M_B = 1.46±0.18太阳质量)。基于此轨道视差,我们对簇成员的代表性样本使用相对适当的运动,以获得m-M = 3.40±0.07(47.8±1.6 pc)的簇的距离模量。我们将所有可用的直接质量测定中的经验质量-光度关系与最新的理论模型进行比较,并且我们利用罕见的机会,即我们具有绝对的光度和颜色,通过与恒星进行比较,得出海德斯的年龄估计为600 Myr演化模型,无需任何任意调整。

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