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首页> 外文期刊>The Astrophysical journal >THE FLAT TRANSMISSION SPECTRUM OF THE SUPER-EARTH GJ1214b FROM WIDE FIELD CAMERA 3 ON THE HUBBLE SPACE TELESCOPE
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THE FLAT TRANSMISSION SPECTRUM OF THE SUPER-EARTH GJ1214b FROM WIDE FIELD CAMERA 3 ON THE HUBBLE SPACE TELESCOPE

机译:哈勃空间望远镜上广角相机3的超地球GJ1214b平面透射光谱

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Capitalizing on the observational advantage offered by its tiny M dwarf host, we present Hubble Space Telescope/Wide Field Camera 3 (WFC3) grism measurements of the transmission spectrum of the super-Earth exoplanet GJ1214b. These are the first published WFC3 observations of a transiting exoplanet atmosphere. After correcting for a ramp-like instrumental systematic, we achieve nearly photon-limited precision in these observations, finding the transmission spectrum of GJ1214b to be flat between 1.1 and 1.7 μm. Inconsistent with a cloud-free solar composition atmosphere at 8.2σ, the measured achromatic transit depth most likely implies a large mean molecular weight for GJ1214b's outer envelope. A dense atmosphere rules out bulk compositions for GJ1214b that explain its large radius by the presence of a very low density gas layer surrounding the planet. High-altitude clouds can alternatively explain the flat transmission spectrum, but they would need to be optically thick up to 10 mbar or consist of particles with a range of sizes approaching 1 μm in diameter.
机译:借助其小型M矮星宿主提供的观测优势,我们介绍了哈勃太空望远镜/宽视场摄像机3(WFC3)对超地球系外行星GJ1214b透射光谱的摩擦测量。这些是WFC3首次发表的关于飞越行星外大气层的观测结果。在校正了类似斜坡的仪器系统后,我们在这些观察结果中获得了接近光子限制的精度,发现GJ1214b的透射光谱在1.1至1.7μm之间是平坦的。与8.2σ的无云太阳组成大气层不一致,测得的消色差传输深度很可能暗示GJ1214b外壳的平均分子量较大。稠密的大气层排除了GJ1214b的大量成分,这些成分通过环绕行星的极低密度气体层的存在来解释其大半径。高空云也可以解释平坦的透射光谱,但是它们的光学厚度必须高达10 mbar,或者由直径范围接近1μm的粒子组成。

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