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THE SMALLEST MASS RATIO YOUNG STAR SPECTROSCOPIC BINARIES

机译:最小质量比率幼星光谱双星

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Using high-resolution near-infrared spectroscopy with the Keck Telescope, we have detected the radial velocity signatures of the cool secondary components in four optically identified pre-main-sequence, single-lined spectroscopic binaries. All are weak-lined T Tauri stars with well-defined center-of-mass velocities. The mass ratio for one young binary, NTTS 160905-1859, is M_2/M_1 = 0.18 +- 0.01, the smallest yet measured dynamically for a pre-main-sequence spectroscopic binary. These new results demonstrate the power of infrared spectroscopy for the dynamical identification of cool secondaries. Visible-light spectroscopy, to date, has not revealed any pre-main-sequence secondary stars with masses <0.5 soalr mass, while two of the young systems reported here are in that range. We compare our targets with a compilation of the published young, double-lined spectroscopic binaries and discuss our unique contribution to this sample.
机译:使用Keck望远镜使用高分辨率近红外光谱仪,我们已经在四个光学识别的前主序列单线光谱二进制中检测到了冷次级分量的径向速度特征。所有这些都是衬砌的T Tauri恒星,其质心速度明确。一个年轻的二进制文件NTTS 160905-1859的质量比为M_2 / M_1 = 0.18±0.01,这是对主序列前光谱二进制文件进行动态测量的最小值。这些新结果证明了红外光谱技术可用于动态识别冷次级溶液。迄今为止,可见光光谱还没有发现质量小于0.5的质量的主序前副星,而这里报道的两个年轻系统都在该范围内。我们将目标与已出版的年轻双谱线双光谱二进制汇编进行了比较,并讨论了我们对该样品的独特贡献。

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