首页> 外文会议>Conference on Interferometry in Space Pt.1, Aug 26-28, 2002, Waikoloa, Hawaii, USA >The Mass-Luminosity Relation and Space-based Interferometery: from Hubble Space Telescope to the Space Interferometry Mission
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The Mass-Luminosity Relation and Space-based Interferometery: from Hubble Space Telescope to the Space Interferometry Mission

机译:质量-光度关系和天基干涉仪:从哈勃太空望远镜到空间干涉测量任务

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With a white-light interferometer (Fine Guidance Sensor 3) on the Hubble Space Telescope (HST) we have secured fringe scanning and fringe tracking observations to measure distances, orbits, and, hence, masses, for several nearby low-mass stars. We have made progress towards a more precise Mass-Luminosity Relation (MLR) for the lower Main Sequence. However, the MLR is a map whose low mass region is complicated by relative and absolute age and whose high-mass end is very poorly determined. To begin to disentangle these effects. and to obtain high-precision mass determinations throughout the Main Sequence, we will participate in the Space Interferometry Mission (SIM) to observe binary stars of all masses in five star clusters with a large range of well-known ages and chemical compositions. We will also observe a sample of stars throughout the Main Sequence. The unparalleled angular resolution and limiting magnitude of SIM will allow us to obtain masses precise to 1%.
机译:使用哈勃太空望远镜(HST)上的白光干涉仪(精细制导传感器3),我们已经确保了条纹扫描和条纹跟踪观测,以测量附近几颗低质量恒星的距离,轨道和质量。对于较低的主序列,我们已经朝着更精确的质量-光度关系(MLR)取得了进展。但是,MLR是这样一个地图,其质量较低的区域由于相对年龄和绝对年龄而变得复杂,并且其高质量末端很难确定。开始理清这些效果。为了获得整个主序列的高精度质量测定,我们将参加空间干涉测量任务(SIM),以五个大星团和大范围的已知年龄和化学成分观测所有质量的双星。我们还将观察整个主序列中的恒星样本。 SIM无与伦比的角度分辨率和有限的幅度将使我们能够获得精确到1%的质量。

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