论文标题

超热木星黄蜂的HST/STIS传输光谱B-76 B确认了钠在其大气中的存在

HST/STIS transmission spectrum of the ultra-hot Jupiter WASP-76 b confirms the presence of sodium in its atmosphere

论文作者

von Essen, C., Mallonn, M., Hermansen, S., Nixon, M. C., Madhusudhan, N., Kjeldsen, H., Tautvaišienė, G.

论文摘要

我们通过分析用哈勃太空望远镜(HST)上的空间望远镜成像光谱仪(STIS)获得的档案数据来呈现超热木星黄蜂W WASP-76 B的大气传播光谱。数据集跨越了三个过渡,两个横向覆盖率为2900至5700阿姆斯特朗,第三个在5250和10300 Armstrong之间。从一维的时间依赖光谱中,我们构建了白色和色彩光曲线,后者的典型整合带宽度约为200 Armstrong。我们计算了WASP-76的伴侣计算的依赖波长的行星与星形半径比。在行星平衡温度的假设下,生成的WASP-76 b的传输光谱以增加不透明度向幅度较短的幅度的幅度较短的波长为主导。如果斜率是由雷利散射引起的,我们将在〜870 K的温度中得出下限。在先前检测到高分辨率光谱衍生的原子钠之前,我们使用以钠为中心的狭窄频段重新分析了HST数据。从大气检索该传输范围,我们报告了钠意义为2.9 sigma的证据。在这种情况下,大气顶部的温度(10-5 bar)为2300 +412-392K。我们还发现了氢化钛的边际证据。但是,需要其他高分辨率地面数据来确认此发现。

We present an atmospheric transmission spectrum of the ultra-hot Jupiter WASP-76 b by analyzing archival data obtained with the Space Telescope Imaging Spectrograph (STIS) on board the Hubble Space Telescope (HST). The dataset spans three transits, two with a wavelength coverage between 2900 and 5700 Armstrong, and the third one between 5250 and 10300 Armstrong. From the one-dimensional, time dependent spectra we constructed white and chromatic light curves, the latter with typical integration band widths of ~200 Armstrong. We computed the wavelength dependent planet-to-star radii ratios taking into consideration WASP-76's companion. The resulting transmission spectrum of WASP-76 b is dominated by a spectral slope of increasing opacity towards shorter wavelengths of amplitude of about three scale heights under the assumption of planetary equilibrium temperature. If the slope is caused by Rayleigh scattering, we derive a lower limit to the temperature of ~870 K. Following-up on previous detection of atomic sodium derived from high resolution spectra, we re-analyzed HST data using narrower bands centered around sodium. From an atmospheric retrieval of this transmission spectrum, we report evidence of sodium at 2.9-sigma significance. In this case, the retrieved temperature at the top of the atmosphere (10-5 bar) is 2300 +412-392 K. We also find marginal evidence for titanium hydride. However, additional high resolution ground-based data are required to confirm this discovery.

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