首页> 外文期刊>The Astrophysical journal >THE LEECH EXOPLANET IMAGING SURVEY: ORBIT AND COMPONENT MASSES OF THE INTERMEDIATE-AGE, LATE-TYPE BINARY NO UMa* **
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THE LEECH EXOPLANET IMAGING SURVEY: ORBIT AND COMPONENT MASSES OF THE INTERMEDIATE-AGE, LATE-TYPE BINARY NO UMa* **

机译:水EXEXPOLANET成像调查:中年晚型二元无UMa *的轨道和质量

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We present high-resolution Large Binocular Telescope LBTI/LMIRcam images of the spectroscopic and astrometric binary NO UMa obtained as part of the LBT Interferometer Exozodi Exoplanet Common Hunt exoplanet imaging survey. Our H-, Ks-, and L'-band observations resolve the system at angular separations 009. The components exhibit significant orbital motion over a span of ~7 months. We combine our imaging data with archival images, published speckle interferometry measurements, and existing spectroscopic velocity data to solve the full orbital solution and estimate component masses. The masses of the K2.0?±?0.5 primary and K6.5?±?0.5 secondary are 0.83?±?0.02 M⊙ and 0.64?±?0.02 M⊙, respectively. We also derive a system distance of d?=?25.87?±?0.02 pc and revise the Galactic kinematics of NO UMa. Our revised Galactic kinematics confirm NO UMa as a nuclear member of the ~500 Myr old Ursa Major moving group, and it is thus a mass and age benchmark. We compare the masses of the NO UMa binary components to those predicted by five sets of stellar evolution models at the age of the Ursa Major group. We find excellent agreement between our measured masses and model predictions with little systematic scatter between the models. NO UMa joins the short list of nearby, bright, late-type binaries having known ages and fully characterized orbits.
机译:我们提供的高分辨率大双筒望远镜LBTI / LMIRcam图像是作为LBT干涉仪Exozodi系外行星Common Hunt系外行星成像调查的一部分而获得的光谱和天文二进制NO UMa的图像。我们的H波段,Ks波段和L'波段的观测结果将系统分解为小于009的角间隔。这些组件在约7个月的时间内表现出明显的轨道运动。我们将成像数据与档案图像,已发布的散斑干涉测量法以及现有的光谱速度数据相结合,以解决整个轨道解并估算组件质量。初级的K2.0≤±0.5的质量和次级的K6.5≤±0.5的质量分别为0.83±±0.02M⊙和0.64±±0.02M⊙。我们还得出系统距离为d?=?25.87?±?0.02 pc,并修改了NO UMa的银河运动学。我们修改后的银河运动学证实NO UMa是〜500 Myr老Ursa Major运动组的核成员,因此它是质量和年龄的基准。我们将NO UMa二元组分的质量与Ursa Major组时代五组恒星演化模型预测的质量进行比较。我们发现测得的质量与模型预测之间具有极好的一致性,而模型之间的系统分散很小。 NO UMa加入了具有已知年龄和特征明确的轨道的附近,明亮的最新型双星的简短列表。
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