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Detecting Unresolved Binaries in TESS Data with Speckle Imaging

机译:用散斑成像检测衰退数据中未解决的二进制文件

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The Transiting Exoplanet Survey Satellite (TESS) is conducting a two-year wide-field survey searching for transiting exoplanets around nearby bright stars that will be ideal for follow-up characterization. To facilitate studies of planet compositions and atmospheric properties, accurate and precise planetary radii need to be derived from the transit light curves. Since 40 –50% of exoplanet host stars are in multiple star systems, however, the observed transit depth may be diluted by the flux of a companion star, causing the radius of the planet to be underestimated. High angular resolution imaging can detect companion stars that are not resolved in the TESS Input Catalog, or by seeing-limited photometry, to validate exoplanet candidates and derive accurate planetary radii. We examine the population of stellar companions that will be detectable around TESS planet candidate host stars, and those that will remain undetected, by applying the detection limits of speckle imaging to the simulated host star populations of Sullivan et al. and Barclay et al. By detecting companions with contrasts of Δm???7–9 and separations of ~0 02–1 2, speckle imaging can detect companion stars as faint as early M stars around A–F stars and stars as faint as mid-M around G–M stars, as well as up to 99% of the expected binary star distribution for systems located within a few hundred parsecs.
机译:过渡的外产调查卫星(TESS)正在进行一项两年的广场调查,寻求在附近的明亮恒星周围过度过渡的外部恒星,这将是用于跟进表征的理想选择。为了便于研究行星组合物和大气性质,准确和精确的行星辐射需要从过渡光曲线衍生出来。然而,由于40%-50%的Exoplanet主体恒星位于多星级系统中,所以观察到的过渡深度可以被伴星的通量稀释,从而导致要低估的星球半径。高角度分辨率成像可以检测在TESS输入目录中未解决的伴侣恒星,或通过看到限制性的光度测量,以验证Exoplanet候选者并获得准确的行星半径。我们研究了围绕苔丝行星候选主体恒星可检测到的恒星伴侣的群体,并且通过将斑点成像的检测限制应用于Sullivan等人的模拟宿主星群体,将保持未被发现。和巴克莱等。通过Δm的对比度检测δm7-9和〜02-1 2的分离,散斑成像可以检测伴侣恒星,因为早期的星星和星星在米中渐渐地晕染-M Stars,以及位于几百个Parsecs内的系统的预期二元星分布的高达99%。

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