论文标题
太阳能邻域L:在30 PC内的1 Gyr和新二进制室的K矮人发现的光谱发现
The Solar Neighborhood L: Spectroscopic Discovery of K Dwarfs Younger Than 1 Gyr and New Binaries within 30 pc
论文作者
论文摘要
作为表征最近恒星的全面努力的一部分,CTIO/SMARTS 150万望远镜上的Chiron Echelle光谱仪已用于在50 parsec中获得高分辨率(R = 80000)光谱。本文提供了有关五个基准组的35 K矮人的光谱详细信息,估计年龄为20 MYR -5.7 GYR。测试了四个频谱年龄和活动指标,其中三个与基准组的估计年龄保持一致 - NA I Doublet(5889.95 $Å$和5895.92 $ $),H $α$ line(6562.8 $Å$)和Li I I Resonance Line(6562.8 $Å$)(6707.8 $ $)。然后,基准恒星用于评估七个场k矮人,表现出可变的径向速度,最初的凯龙数据并未显示出明显的伴侣。这些恒星中有两个估计年轻了700个MYR,而一颗恒星对于年长的K矮人野外明星表现出了出色的活动,并且可能年轻。事实证明,剩下的四个恒星是光谱二进制的,其中两个是在此处首次报道使用Chiron Data发现的轨道周期。 42基准和可变径向速度星的合并样品的频谱分析表明,温度从3900---5300 K和金属性范围从$ -0.4 $ <$ <$ [fe/h] $ <$ <$ <$+$+$+$ 0.2。我们还确定$ log g $ = 4.5--4.7对于主序列K矮人。最终,这项研究将针对数千个最近的K矮人,并提供结果,这些结果将为恒星天体物理学和系外行星的可居住性提供当前和未来的研究。
As part of a comprehensive effort to characterize the nearest stars, the CHIRON echelle spectrograph on the CTIO/SMARTS 1.5m telescope is being used to acquire high resolution (R = 80000) spectra of K dwarfs within 50 parsecs. This paper provides spectral details about 35 K dwarfs from five benchmark sets with estimated ages spanning 20 Myr -- 5.7 Gyr. Four spectral age and activity indicators are tested, three of which aligned with the estimated ages of the benchmark groups -- the Na I doublet (5889.95 $Å$ and 5895.92 $Å$), the H$α$ line (6562.8 $Å$), and the Li I resonance line (6707.8 $Å$). The benchmark stars are then used to evaluate seven field K dwarfs exhibiting variable radial velocities for which initial CHIRON data did not show obvious companions. Two of these stars are estimated to be younger than 700 Myr, while one exhibits stellar activity unusual for older K dwarf field stars and is possibly young. The four remaining stars turn out to be spectroscopic binaries, two of which are being reported here for the first time with orbital periods found using CHIRON data. Spectral analysis of the combined sample of 42 benchmark and variable radial velocity stars indicates temperatures ranging from 3900--5300 K and metallicities from $-$0.4 $<$ [Fe/H] $<$ $+$0.2. We also determine $log g$ = 4.5--4.7 for main sequence K dwarfs. Ultimately, this study will target several thousand of the nearest K dwarfs, and provide results that will serve present and future studies of stellar astrophysics and exoplanet habitability.