论文标题

荷鲁斯传输光谱和Kelt-7B的修订行星参数

HORuS transmission spectroscopy and revised planetary parameters of KELT-7b

论文作者

Tabernero, H. M., Osorio, M. R. Zapatero, Prieto, C. Allende, Gonzalez-Alvarez, E., Sanz-Forcada, J., Lopez-Gallifa, A., Montes, D., del Burgo, C., Hernandez, J. I. Gonzalez, Rebolo, R.

论文摘要

我们报告了热木星Kelt-7b的两个行星过渡的高分辨率光谱观察结果($ M _ {\ rm p} $ = $ = $ 1.28 $ \ pm $ 0.17 m $ _ $ _ {\ rm jup jup} $安装在10.4 m Gran Telescopio Canarias(GTC)上。从光谱分析中获得了快速旋转的母星的新一组恒星参数。使用新衍生的恒星质量和半径,以及过渡系系群调查卫星(TESS)的行星传输数据,以及荷鲁斯速度以及文献中提供的光度和光度和光谱数据,我们更新和改善Kelt-7b的ephemeris。我们的结果表明,Kelt-7的角度$λ$ = $ - $ 10.55 $ \ pm \ pm $ 0.27度之间的恒星旋转轴和行星轨道轴的天空投影之间。通过将这个角度和我们新得出的恒星轮换期为1.38 $ \ pm $ 0.05 d,我们获得了3D倾斜$ψ$ = 12.4 $ \ pm $ 11.7 ver(或167.6 ver),因此增强了Kelt-7是一个很好的行星系统。我们在KELT-7B的传输范围中搜索H $α$,LI I,Na I,Mg I和Ca II的特征,但我们只能确定其在其存在下的上限为0.08-1.4%的上限,这在考虑到恒星变异性对提取的星球谱的贡献后。我们还讨论了恒星变异性在行星数据中的影响。我们的结果增强了在存在恒星活性的情况下,在执行行星大气的高分辨率传输光谱时监测母恒星的重要性。

We report on the high-resolution spectroscopic observations of two planetary transits of the hot Jupiter KELT-7b ($M_{\rm p}$ $=$ 1.28 $\pm$ 0.17 M$_{\rm Jup}$, $T_{\rm eq}$ $=$ 2028 K) observed with the High Optical Resolution Spectrograph (HORuS) mounted on the 10.4-m Gran Telescopio Canarias (GTC). A new set of stellar parameters are obtained for the rapidly rotating parent star from the analysis of the spectra. Using the newly derived stellar mass and radius, and the planetary transit data of the Transiting Exoplanet Survey Satellite (TESS) together with the HORuS velocities and the photometric and spectroscopic data available in the literature, we update and improve the ephemeris of KELT-7b. Our results indicate that KELT-7 has an angle $λ$ = $-$10.55 $\pm$ 0.27 deg between the sky projections of the star's spin axis and the planet's orbital axis. By combining this angle and our newly derived stellar rotation period of 1.38 $\pm$ 0.05 d, we obtained a 3D obliquity $ψ$ = 12.4 $\pm$ 11.7 deg (or 167.6 deg), thus reinforcing that KELT-7 is a well-aligned planetary system. We search for the presence of H$α$, Li I, Na I, Mg I, and Ca II features in the transmission spectrum of KELT-7b but we are only able to determine upper limits of 0.08-1.4 % on their presence after accounting for the contribution of the stellar variability to the extracted planetary spectrum. We also discuss the impact of stellar variability in the planetary data. Our results reinforce the importance of monitoring the parent star when performing high-resolution transmission spectroscopy of the planetary atmosphere in the presence of stellar activity.

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