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The mass and age of the first SONG target: the red giant 46 LMi

机译:第一个SONG目标的质量和年龄:红色巨人46 LMi

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Context. The Stellar Observation Network Group (SONG) is an initiative to build a worldwide network of 1m telescopes with high-precision radial-velocity spectrographs. Here we analyse the first radial-velocity time series of a red-giant star measured by the SONG telescope at Tenerife. The asteroseismic results demonstrate a major increase in the achievable precision of the parameters for red-giant stars obtainable from ground-based observations. Reliable tests of the validity of these results are needed, however, before the accuracy of the parameters can be trusted. Aims. We analyse the first SONG time series for the star 46 LMi, which has a precise parallax and an angular diameter measured from interferometry, and therefore a good determination of the stellar radius. We use asteroseismic scaling relations to obtain an accurate mass, and modelling to determine the age. Methods. A 55-day time series of high-resolution, high S/N spectra were obtained with the first SONG telescope. We derive the asteroseismic parameters by analysing the power spectrum. To give a best guess on the large separation of modes in the power spectrum, we have applied a new method which uses the scaling of Kepler red-giant stars to 46 LMi. Results. Several methods have been applied: classical estimates, seismic methods using the observed time series, and model calculations to derive the fundamental parameters of 46 LMi. Parameters determined using the different methods are consistent within the uncertainties. We find the following values for the mass M (scaling), radius R (classical), age (modelling), and surface gravity (combining mass and radius): M = 1.09 ± 0.04 M _(⊙), R = 7.95 ± 0.11 R _(⊙)age t = 8.2 ± 1.9 Gy, and log g = 2.674 ± 0.013. Conclusions. The exciting possibilities for ground-based asteroseismology of solar-like oscillations with a fully robotic network have been illustrated with the results obtained from just a single site of the SONG network. The window function is still a severe problem which will be solved when there are more nodes in the network.
机译:上下文。恒星观测网络小组(SONG)是一项计划,旨在建立一个由1m望远镜组成的全球网络,并配备高精度径向速度光谱仪。在这里,我们分析了特内里费岛的SONG望远镜测量到的红巨星的第一个径向速度时间序列。地震结果表明,从地面观测获得的红巨星参数可达到的精度大大提高。但是,在可以信任参数准确性之前,需要对这些结果的有效性进行可靠的测试。目的我们分析了46 LMi星的第一个SONG时间序列,该星具有精确的视差和通过干涉测量法测得的角直径,因此可以很好地确定恒星半径。我们使用星震比例关系获取准确的质量,并进行建模以确定年龄。方法。使用第一台SONG望远镜获得了55天的高分辨率,高S / N光谱时间序列。我们通过分析功率谱来导出星震参数。为了对功率谱中模式的较大分离给出最佳猜测,我们应用了一种新方法,该方法使用开普勒红巨星的缩放比例为46 LMi。结果。已经应用了几种方法:经典估计,使用观测到的时间序列的地震方法以及模型计算以得出46 LMi的基本参数。使用不同方法确定的参数在不确定性内是一致的。我们找到以下质量M(比例),半径R(经典),年龄(模型)和表面重力(质量与半径组合)的值:M = 1.09±0.04 M _(⊙),R = 7.95±0.11 R _(⊙)年龄t = 8.2±1.9Gy,logg = 2.674±0.013。结论。仅从SONG网络的单个站点获得的结果就说明了具有完全机械手网络的类似太阳的振荡的地基地震学令人激动的可能性。窗口功能仍然是一个严重的问题,当网络中有更多节点时,将解决该问题。

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