论文标题

WASP-121B传输光谱的高分辨率大气检索,带浓缩咖啡:多个时期和仪器的一致相对丰度约束

High-resolution atmospheric retrievals of WASP-121b transmission spectroscopy with ESPRESSO: Consistent relative abundance constraints across multiple epochs and instruments

论文作者

Maguire, Cathal, Gibson, Neale P., Nugroho, Stevanus K., Ramkumar, Swaetha, Fortune, Mark, Merritt, Stephanie R., de Mooij, Ernst

论文摘要

高分辨率传输光谱法的最新进展提供了新的途径,以表征过境外球星的大气。高分辨率互相关光谱允许明确检测分子/原子。它还被用来绘制整个早晨和晚上的大气动力学和纵向变化。我们提出了超热木星黄蜂121b的多个VLT/浓缩咖啡观察结果,从中,我们从中始终如一地约束各种中性金属的相对丰度,同时考虑了由传统数据处理技术引起的外部行星信号的失真。我们还限制了行星轨道速度和$ t $ - $ P $配置文件。我们将我们的丰度约束与使用VLT/UVE的传输光谱谱图与先前的限制进行了比较,并发现我们的结果在观测值之间保持一致,并且与先前在黄蜂-121b大气中检测到的物种的恒星值一致。我们的检索框架也可用于识别潜在的外层物种,从而超出了WASP-121B的过境等效限制($ r _ {\ rm eqrl} $ \ sim $ \ sim $ 1.3 $ 1.3 $ r _ {\ rm p} $)。发现H $α$,Fe II和Ca II被发现扩展到高海拔高度($ 1.54 \ pm0.04 $ $ $ $ r _ {\ rm p} $,$ 1.17 \ pm0.01 $ $ $ $ $ r _ {\ rm p} $值。我们在多个高分辨率观察中的约束的一致性是对我们的模型过滤和检索框架的有力验证,以及在几个月/年的时间尺度上大气的稳定性,并且可以从未来的地面观测中推断出行星形成过程。

Recent progress in high-resolution transmission spectroscopy has offered new avenues in which to characterise the atmospheres of transiting exoplanets. High-resolution cross-correlation spectroscopy allows for the unambiguous detection of molecules/atoms. It has also been used to map both atmospheric dynamics and longitudinal variations in the abundance of species across the morning and evening limbs. We present multiple VLT/ESPRESSO observations of the ultra-hot Jupiter WASP-121b, from which we constrain relative abundances of various neutral metals consistently across all observations, whilst accounting for the distortion of the exoplanet's signal caused by traditional data processing techniques. We also constrain planetary orbital velocities and $T$-$P$ profiles. We compare our abundance constraints with previous constraints using VLT/UVES transmission spectroscopy of WASP-121b, and find our results to be consistent between observations, and also in agreement with stellar values for species previously detected in the atmosphere of WASP-121b. Our retrieval framework can also be used to identify potential exospheric species, resulting in extended absorption features beyond the transit equivalent Roche limit of WASP-121b ($R_{\rm eqRL}$ $\sim$ 1.3 $R_{\rm p}$). H$α$, Fe II, and Ca II were found to extend to high altitudes ($1.54\pm0.04$ $R_{\rm p}$, $1.17\pm0.01$ $R_{\rm p}$, and $2.52\pm0.34$ $R_{\rm p}$, respectively), which are broadly consistent with literature values. The consistency of our constraints across multiple high-resolution observations is a strong validation of our model filtering and retrieval framework, as well as the stability of the atmosphere over the timescales of months/years, and could allow for planet formation processes to be inferred from future ground-based observations of exoplanetary atmospheres.

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