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首页> 外文期刊>The Astrophysical journal >FRIENDS OF HOT JUPITERS. III. AN INFRARED SPECTROSCOPIC SEARCH FOR LOW-MASS STELLAR COMPANIONS
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FRIENDS OF HOT JUPITERS. III. AN INFRARED SPECTROSCOPIC SEARCH FOR LOW-MASS STELLAR COMPANIONS

机译:热少年的朋友。三,低质量恒星组分的红外光谱搜索

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Surveys of nearby field stars indicate that stellar binaries are common, yet little is known about the effects that these companions may have on planet formation and evolution. The Friends of Hot Jupiters project uses three complementary techniques to search for stellar companions to known planet-hosting stars: radial velocity monitoring, adaptive optics imaging, and near-infrared spectroscopy. In this paper, we examine high-resolution K band infrared spectra of fifty stars hosting gas giant planets on short-period orbits. We use spectral fitting to search for blended lines due to the presence of cool stellar companions in the spectra of our target stars, where we are sensitive to companions with temperatures between 3500 and 5000 K and projected separations less than 100 AU in most systems. We identify eight systems with candidate low-mass companions, including one companion that was independently detected in our AO imaging survey. For systems with radial velocity accelerations, a spectroscopic non-detection rules out scenarios involving a stellar companion in a high inclination orbit. We use these data to place an upper limit on the stellar binary fraction at small projected separations, and show that the observed population of candidate companions is consistent with that of field stars and also with the population of wide-separation companions detected in our previous AO survey. We find no evidence that spectroscopic stellar companions are preferentially located in systems with short-period gas giant planets on eccentric and/or misaligned orbits.
机译:对附近野外恒星的调查表明,恒星双星很普遍,但对这些伴星对行星形成和演化的影响知之甚少。 “热木星之友”项目使用三种补充技术来搜索已知行星所在恒星的恒星伴星:径向速度监测,自适应光学成像和近红外光谱。在本文中,我们研究了五十个在短周期轨道上托管气体巨行星的恒星的高分辨率K波段红外光谱。由于目标恒星的光谱中存在凉爽的恒星伴星,因此我们使用光谱拟合来搜索混合线,在大多数系统中,我们对温度在3500至5000 K之间且预计间隔小于100 AU的伴星敏感。我们确定了八个具有候选低质量伴星的系统,其中包括一个在我们的AO成像调查中独立检测到的伴星。对于具有径向速度加速度的系统,光谱非探测排除了在高倾角轨道上涉及恒星伴星的场景。我们使用这些数据在较小的预计分离上对恒星二元分数设定了上限,并表明观察到的候选同伴群体与实地恒星相一致,并且与我们先前的AO中检测到的宽分离同伴群体相一致。调查。我们找不到证据表明光谱恒星伴星优先位于偏心和/或偏心轨道上具有短周期天然气巨行星的系统中。

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