论文标题
在热木星气氛中评估由于TIO引起的光谱和热反转
Assessing Spectra and Thermal Inversions due to TiO in Hot Jupiter Atmospheres
论文作者
论文摘要
在一些热木星的日常大气中,最近对热反转的检测正在激励新的途径,以了解其温度结构与其他大气条件之间的相互作用。特别是,长期以来一直有人提出TIO在热木星中引起热反转,具体取决于其他因素,例如恒星照射,C/O和垂直混合。 TIO在已检测到的光学和近红外具有光谱特征。但是,对TIO签名的解释取决于模型中使用的TIO不透明度的准确性。最近报道的TOTO TIO线列表提供了一个新的机会来调查这些依赖性,这是当前工作的目标。首先,我们研究了托托线列表如何影响低分辨率和高分辨率的热木星的可观察到的传播和发射光谱。与先前的行列表相比,Toto行列表的改进导致模型光谱的可观察到差异,尤其是在高分辨率下的光学中。其次,我们使用一维自洽大气模型探索了温度结构,辐射和组成与TIO作为光学不透明度的主要来源之间的相互作用。在其他趋势中,我们发现,由于TIO峰值为C/O $ \ SIM $ 0.9,热反转的倾向与最近的研究一致。使用这些模型,我们进一步评估指标,以量化由于TIO引起的热反转,与经常使用的Spitzer光度法相比,在C/O,辐照,金属性,重力和恒星类型的范围内。
Recent detections of thermal inversions in the dayside atmospheres of some hot Jupiters are motivating new avenues to understand the interplay between their temperature structures and other atmospheric conditions. In particular, TiO has long been proposed to cause thermal inversions in hot Jupiters, depending on other factors such as stellar irradiation, C/O, and vertical mixing. TiO also has spectral features in the optical and near-infrared that have been detected. However, interpretations of TiO signatures rely on the accuracy of TiO opacity used in the models. The recently reported Toto TiO line list provides a new opportunity to investigate these dependencies, which is the goal of the present work. First, we investigate how the Toto line list affects observable transmission and emission spectra of hot Jupiters at low and high resolution. The improvement in the Toto line list compared to a previous line list results in observable differences in the model spectra, particularly in the optical at high resolution. Secondly, we explore the interplay between temperature structure, irradiation and composition with TiO as the primary source of optical opacity, using 1D self-consistent atmospheric models. Among other trends, we find that the propensity for thermal inversions due to TiO peaks at C/O$\sim$0.9, consistent with recent studies. Using these models, we further assess metrics to quantify thermal inversions due to TiO, compared to frequently-used Spitzer photometry, over a range in C/O, irradiation, metallicity, gravity and stellar type.