...
首页> 外文期刊>The Astrophysical journal >ATMOSPHERIC CHARACTERIZATION OF FIVE HOT JUPITERS WITH THE WIDE FIELD CAMERA 3 ON THE HUBBLE SPACE TELESCOPE
【24h】

ATMOSPHERIC CHARACTERIZATION OF FIVE HOT JUPITERS WITH THE WIDE FIELD CAMERA 3 ON THE HUBBLE SPACE TELESCOPE

机译:哈勃空间望远镜上具有广角摄像机3的五个热四射子的大气特征

获取原文
   

获取外文期刊封面封底 >>

       

摘要

We probe the structure and composition of the atmospheres of five hot Jupiter exoplanets using the Hubble Space Telescope Wide Field Camera 3 (WFC3) instrument. We use the G141 grism (1.1-1.7 μm) to study TrES-2b, TrES-4b, and CoRoT-1b in transit; TrES-3b in secondary eclipse; and WASP-4b in both. This wavelength region includes a predicted absorption feature from water at 1.4 μm, which we expect to be nondegenerate with the other molecules that are likely to be abundant for hydrocarbon-poor (e.g., solar composition) hot Jupiter atmospheres. We divide our wavelength regions into 10 bins. For each bin we produce a spectrophotometric light curve spanning the time of transit or eclipse. We correct these light curves for instrumental systematics without reference to an instrument model. For our transmission spectra, our mean 1σ precision per bin corresponds to variations of 2.1, 2.8, and 3.0 atmospheric scale heights for TrES-2b, TrES-4b, and CoRoT-1b, respectively. We find featureless spectra for these three planets. We are unable to extract a robust transmission spectrum for WASP-4b. For our dayside emission spectra, our mean 1σ precision per bin corresponds to a planet-to-star flux ratio of 1.5 × 10–4 and 2.1 × 10–4 for WASP-4b and TrES-3b, respectively. We combine these estimates with previous broadband measurements and conclude that for both planets isothermal atmospheres are disfavored. We find no signs of features due to water. We confirm that WFC3 is suitable for studies of transiting exoplanets, but in staring mode multivisit campaigns are necessary to place strong constraints on water abundance.
机译:我们使用哈勃太空望远镜广角相机3(WFC3)仪器探测了五个热木星系外行星的大气结构和组成。我们使用G141磨粒(1.1-1.7μm)研究运输中的TrES-2b,TrES-4b和CoRoT-1b; TrES-3b在次蚀中;和WASP-4b。该波长区域包括在1.4μm的水中的预测吸收特征,我们预计该特征不会与其他对烃贫乏(例如,太阳组成)热的木星大气很可能丰富的分子发生退化。我们将波长区域分为10个区域。对于每个箱,我们都会生成一个跨过或蚀时的分光光度曲线。我们在不参考仪器模型的情况下为仪器系统校正了这些光曲线。对于我们的透射光谱,我们每个仓位的平均1σ精度分别对应于TrES-2b,TrES-4b和CoRoT-1b的2.1、2.8和3.0大气尺度高度变化。我们发现这三个行星的无特征光谱。我们无法为WASP-4b提取可靠的传输频谱。对于我们的日间发射光谱,我们每个仓位的平均1σ精度分别对应于WASP-4b和TrES-3b的行星与恒星的通量比为1.5×10–4和2.1×10–4。我们将这些估计值与以前的宽带测量结果结合在一起,得出结论,对于这两个行星而言,均等大气是不利的。由于水,我们没有发现任何特征。我们确认WFC3适合进行过流系外行星的研究,但在凝视模式下,有必要进行多次造访运动,以对水丰度施加严格限制。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号