论文标题
系系系统的碱外层:蒸发传输光谱
Alkaline Exospheres of Exoplanet Systems: Evaporative Transmission Spectra
论文作者
论文摘要
静液压平衡是行星大气层密集层的绝佳近似,在该层上已被典型地用于解释系外行星的传输光谱。在这里,由于其强大的吸收横截面,我们利用高分辨率光谱仪探测钠和钾气体的脆弱层的能力。我们提出了光学厚和光学薄培养基之间的大气 - 异层退化性,这提出了一个问题,即是否适合于在系系外行星上观察到的Na I线。为此,我们模拟了三个非静态,蒸发,密度曲线:(i)逃脱,(ii)Exomoon和(iii)圆环,以检查它们在传播中碱性外层上的烙印。通过分析生长的蒸发曲线,我们发现$ w _ {\ mathrm {na d2}}} \ sim 1-10 $ mA的等效宽度自然是由蒸发率$ \ sim 10^3-10^3-10^5 $ kg/s的纯原子NA的驱动。为了打破大气吸收和外层吸收之间的退化性,我们建议,如果线比为$ \ mathrm {d2/d1} \ gtrsim 1.2 $ 1.2 $,气体平均是光学稀薄的,并且大致表示大气/外层的非静态结构。我们证明了在热木星WASP-49B和HD189733B上进行NA I观察的情况,还模拟了他们的K I光谱。最后,由超热木星的金属探测器的动机,我们建议在WASP-76B和WASP-121B处的环形大气与目前的NA I数据一致。
Hydrostatic equilibrium is an excellent approximation for the dense layers of planetary atmospheres where it has been canonically used to interpret transmission spectra of exoplanets. Here we exploit the ability of high-resolution spectrographs to probe tenuous layers of sodium and potassium gas due to their formidable absorption cross-sections. We present an atmosphere-exosphere degeneracy between optically thick and optically thin mediums, raising the question of whether hydrostatic equilibrium is appropriate for Na I lines observed at exoplanets. To this end we simulate three non-hydrostatic, evaporative, density profiles: (i) escaping, (ii) exomoon, and (iii) torus to examine their imprint on an alkaline exosphere in transmission. By analyzing an evaporative curve of growth we find that equivalent widths of $W_{\mathrm{Na D2}} \sim 1- 10$ mA are naturally driven by evaporation rates $\sim 10^3 - 10^5$ kg/s of pure atomic Na. To break the degeneracy between atmospheric and exospheric absorption, we suggest that if the line ratio is $\mathrm{D2/D1} \gtrsim 1.2$ the gas is optically thin on average and roughly indicating a non-hydrostatic structure of the atmosphere/exosphere. We show this is the case for Na I observations at hot Jupiters WASP-49b and HD189733b and also simulate their K I spectra. Lastly, motivated by the slew of metal detections at ultra-hot Jupiters, we suggest a toroidal atmosphere at WASP-76b and WASP-121b is consistent with the Na I data at present.