论文标题
超短时期的岩石超级地铁绕G2-Star HD 80653
An ultra-short period rocky super-Earth orbiting the G2-star HD 80653
论文作者
论文摘要
Ultra-Short时期(USP)行星是一类系列系列,其周期比一天短。行星亚种群的起源仍不清楚,不同的形成场景高度取决于USP行星的组成。因此,更好地了解这类系外行星将需要增加具有准确和精确的质量和半径的行星样本的增加,这还包括对辐射水平的估计以及有关可能伴侣的信息。在这里,我们报告了使用K2光曲线和108个使用HARPS-N光谱仪获得的精确径向速度的Solar-Type Star HD 80653 $ \ EPERIV $ ep 251279430围绕太阳能型星HD 80653 $ \ epiv $ ep 251279430的详细表征,该详细介绍了USP行星。从K2 C16数据中,我们发现了一个超级地球($ r_ {b} = 1.613 \ pM0.071 r _ {\ oplus} $)在短期period orbit上透射恒星($ p _ {\ rm b} = 0.719573 \ pm0.719573 \ pm0.00.00000000000000000021 $ d)。从我们的径向速度测量值中,我们将HD 80653 B的质量限制为$ M_ {B} = 5.60 \ PM0.43 M _ {\ oplus} $。我们还检测到径向速度数据的长期趋势。我们得出了基本的恒星参数,并确定了$ r _ {\ star} = 1.22 \ pm0.01 r _ {\ odot} $的半径,$ m _ {\ star} = 1.18 \ pm0.04 m _ {\ odot} $ $ g pm $ $ gy $ $ $ g。行星的散装密度($ρ_{b} = 7.4 \ pm 1.1 $ g cm $^{ - 3} $)与岩石和铁的地球状成分一致,没有厚厚的气氛。我们对K2光度法的分析还表明,深度为8.1 $ \ pm $ 3.7 ppm的浅次级日食的提示。沿轨道相的通量变化与零一致。最重要的贡献可能来自$ t \ sim3480 $ k的白天侧热发射。
Ultra-short period (USP) planets are a class of exoplanets with periods shorter than one day. The origin of this sub-population of planets is still unclear, with different formation scenarios highly dependent on the composition of the USP planets. A better understanding of this class of exoplanets will, therefore, require an increase in the sample of such planets that have accurate and precise masses and radii, which also includes estimates of the level of irradiation and information about possible companions. Here we report a detailed characterization of a USP planet around the solar-type star HD 80653 $\equiv$ EP 251279430 using the K2 light curve and 108 precise radial velocities obtained with the HARPS-N spectrograph, installed on the Telescopio Nazionale Galileo. From the K2 C16 data, we found one super-Earth planet ($R_{b}=1.613\pm0.071 R_{\oplus}$) transiting the star on a short-period orbit ($P_{\rm b}=0.719573\pm0.000021$ d). From our radial velocity measurements, we constrained the mass of HD 80653 b to $M_{b}=5.60\pm0.43 M_{\oplus}$. We also detected a clear long-term trend in the radial velocity data. We derived the fundamental stellar parameters and determined a radius of $R_{\star}=1.22\pm0.01 R_{\odot}$ and mass of $M_{\star}=1.18\pm0.04 M_{\odot}$, suggesting that HD 80653, has an age of $2.7\pm1.2$ Gyr. The bulk density ($ρ_{b} = 7.4 \pm 1.1$ g cm$^{-3}$) of the planet is consistent with an Earth-like composition of rock and iron with no thick atmosphere. Our analysis of the K2 photometry also suggests hints of a shallow secondary eclipse with a depth of 8.1$\pm$3.7 ppm. Flux variations along the orbital phase are consistent with zero. The most important contribution might come from the day-side thermal emission from the surface of the planet at $T\sim3480$ K.