论文标题
1.1-1.7 $μ$ m以1.1-1.7 $ m $ m的传输频谱L98-59〜b
A transmission spectrum of the sub-Earth planet L98-59~b in 1.1-1.7 $μ$m
论文作者
论文摘要
随着苔丝发现的行星数量越来越多,小型系外行星的大气表征正在加速。 L98-59是一个托有多行星系统的M-warf,到目前为止,已经确认了四个小行星。最内向的行星B是$ \ sim15 \%$较小,$ \ sim60 \%$比地球轻,因此应该具有主要的岩石成分。哈勃太空望远镜在$ 1.1-1.7 \μ$ m中观察到L98-59B的五个主要转运,在这里我们报告了数据分析和所得的行星传输光谱。我们测量了这五个转运中每个转运的每个中的三个转运深度,并且通过组合,我们获得了18个分光光度计通道中每个通道的总体精度为$ \ sim20 $ ppm的传输频谱。凭借这种精确度,传输光谱不会显示出明显的调制,因此与没有任何大气或具有大气和高空云或阴霾的行星一致。涉及无气雾剂,h $ _2 $的气氛的场景与h $ _2 $ o或ch $ _4 $的氛围与数据不一致。传输频谱也不划分,但并不排除,h $ _2 $ o主导的气氛没有云。光谱检索过程表明,H $ _2 $区的hcn和云或阴霾的气氛可能是首选的解决方案,但这种迹象毫无疑问。未来的詹姆斯·韦伯(James Webb)太空望远镜观察可能会发现其余可行的场景中地球的性质。
With the increasing number of planets discovered by TESS, the atmospheric characterization of small exoplanets is accelerating. L98-59 is a M-dwarf hosting a multi-planet system, and so far, four small planets have been confirmed. The innermost planet b is $\sim15\%$ smaller and $\sim60\%$ lighter than Earth, and should thus have a predominantly rocky composition. The Hubble Space Telescope observed five primary transits of L98-59b in $1.1-1.7\ μ$m, and here we report the data analysis and the resulting transmission spectrum of the planet. We measure the transit depths for each of the five transits and, by combination, we obtain a transmission spectrum with an overall precision of $\sim20$ ppm in for each of the 18 spectrophotometric channels. With this level of precision, the transmission spectrum does not show significant modulation, and is thus consistent with a planet without any atmosphere or a planet having an atmosphere and high-altitude clouds or haze. The scenarios involving an aerosol-free, H$_2$-dominated atmosphere with H$_2$O or CH$_4$ are inconsistent with the data. The transmission spectrum also disfavors, but does not rules out, an H$_2$O-dominated atmosphere without clouds. A spectral retrieval process suggests that an H$_2$-dominated atmosphere with HCN and clouds or haze may be the preferred solution, but this indication is non-conclusive. Future James Webb Space Telescope observations may find out the nature of the planet among the remaining viable scenarios.