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Characterization of the HD?17156 planetary system

机译:HD?17156行星系统的特征

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摘要

Aims. We present data to improve the known parameters of the HD17156 system (peculiar due to the eccentricity and long orbital period of its transiting planet) and constrain the presence of stellar companions. Methods. Photometric data were acquired for 4 transits, and high precision radial velocity measurements were simultaneously acquired with the SARG spectrograph at TNG for one transit. The template spectra of HD17156 was used to derive effective temperature, gravity, and metallicity. A fit of the photometric and spectroscopic data was performed to measure the stellar and planetary radii, and the spin-orbit alignment. Planet orbital elements and ephemeris were derived from the fit. Near infrared adaptive optic images were acquired with the AdOpt module of TNG. Results. We found that the star has a radius of and the planet .The transit ephemeris is BJD. Analysis of the Rossiter-Mclaughlin effect shows that the system is spin orbit aligned with an angle .The analysis of high resolution images did not reveal any stellar companion with a projected separation between of 150 and 1000 AU from HD17156. Key words: stars: individual: HD 17156 - stars: binaries: eclipsing - stars: planetary systems -techniques: spectroscopic - techniques: photometric
机译:目的我们提出的数据可以改善HD17156系统的已知参数(由于其运行行星的偏心和较长的轨道周期而具有特殊性)并限制了恒星伴星的存在。方法。采集了4个航次的光度数据,并使用SARG光谱仪同时在TNG采集了1个航次的高精度径向速度测量值。 HD17156的模板光谱用于得出有效的温度,重力和金属性。对光度和光谱数据进行拟合以测量恒星和行星半径以及自旋轨道对准。行星轨道元素和星历表都来自拟合。使用TNG的AdOpt模块获取近红外自适应光学图像。结果。我们发现恒星的半径为,行星的半径为。星历为BJD。对Rossiter-Mclaughlin效应的分析表明,该系统以一定角度自旋轨道对准。对高分辨率图像的分析未发现任何恒星伴星,其与HD17156的预计间隔为150至1000 AU。关键词:恒星:个人:HD 17156-恒星:双星:日食-恒星:行星系统-技术:光谱-技术:光度

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