论文标题

在超热气体巨头WASP-76B和WASP-121B的大气中检测钡

Detection of barium in the atmospheres of the ultra-hot gas giants WASP-76b and WASP-121b

论文作者

Silva, T. Azevedo, Demangeon, O. D. S., Santos, N. C., Allart, R., Borsa, F., Cristo, E., Esparza-Borges, E., Seidel, J. V., Palle, E., Sousa, S. G., Tabernero, H. M., Osorio, M. R. Zapatero, Cristiani, S., Pepe, F., Rebolo, R., Adibekyan, V., Alibert, Y., Barros, S. C. C., Bouchy, F., Bourrier, V., Curto, G. Lo, Di Marcantonio, P., D'Odorico, V., Ehrenreich, D., Figueira, P., Hernández, J. I. González, Lovis, C., Martins, C. J. A. P., Mehner, A., Micela, G., Molaro, P., Mounzer, D., Nunes, N. J., Sozzetti, A., Mascareño, A. Suárez, Udry, S.

论文摘要

超热木星的高分辨率光谱研究一直是我们对系外行星大气的理解。观察这些巨型行星的大气中,可以直接限制其大气组成和动态,同时为有关其形成和进化环境的新研究奠定了基础。 最研究的两个超热木星是WASP-76B和WASP-121B,具有多种检测到的化学物种和强烈的大气动力学特征。我们通过重新分析了在非常大的望远镜上用浓缩咖啡进行的过境观测来重新分析这两个特殊的超热木星,并试图检测其他物种。 为了提取两个靶标的行星光谱,我们校正了牙槽吸收并去除了恒星光谱贡献。 然后,我们利用了新的合成模板,这些模板是专门为超热木星设计的,并与互相关技术结合使用,以揭示以前分析未发现的ve虫物种。 我们将BA+的新发现添加到WASP-76B和WASP-121b的已知大气组成中,WASP-76B和WASP-121B是迄今为止在任何系型大气中检测到的最重的物种,对WASP-121B的CO和SR+进行了额外的新检测以及对Ti+的触觉检测。我们还在WASP-76B和WASP-121B上证实了Ca+,Cr,Fe,H,Li,Mg,Mn,Na和V的存在,后者添加了Ca,Fe+和Ni。最后,我们还证实了Ca+在WASP-121B上的明显不对称吸收特征,在蓝色波长处具有多余的吸收,而Roche Lobe以外的有效行星半径。这表明信号可能是由行星气氛的逃脱产生的。

High-resolution spectroscopy studies of ultra-hot Jupiters have been key in our understanding of exoplanet atmospheres. Observing into the atmospheres of these giant planets allows for direct constraints on their atmospheric compositions and dynamics while laying the groundwork for new research regarding their formation and evolution environments. Two of the most well-studied ultra-hot Jupiters are WASP-76b and WASP-121b, with multiple detected chemical species and strong signatures of their atmospheric dynamics. We take a new look at these two exceptional ultra-hot Jupiters by reanalyzing the transit observations taken with ESPRESSO at the Very Large Telescope and attempt to detect additional species. To extract the planetary spectra of the two targets, we corrected for the telluric absorption and removed the stellar spectrum contributions. We then exploited new synthetic templates that were specifically designed for ultra-hot Jupiters in combination with the cross-correlation technique to unveil species that remained undetected by previous analyses. We add a novel detection of Ba+ to the known atmospheric compositions of WASP-76b and WASP-121b, the heaviest species detected to date in any exoplanetary atmosphere, with additional new detections of Co and Sr+ and a tentative detection of Ti+ for WASP-121b. We also confirm the presence of Ca+, Cr, Fe, H, Li, Mg, Mn, Na, and V on both WASP-76b and WASP-121b, with the addition of Ca, Fe+, and Ni for the latter. Finally, we also confirm the clear asymmetric absorption feature of Ca+ on WASP-121b, with an excess absorption at the bluer wavelengths and an effective planet radius beyond the Roche lobe. This indicates that the signal may arise from the escape of planetary atmosphere.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源