论文标题

十个具有高分辨率传播光谱的巨型系外行星中钠吸收的调查

A survey of sodium absorption in ten giant exoplanets with high-resolution transmission spectroscopy

论文作者

Langeveld, Adam B., Madhusudhan, Nikku, Cabot, Samuel H. C.

论文摘要

碱金属钠(NA)是巨型外部球星上最高大气中最常见的化学物种之一。在这项工作中,我们使用高分辨率传输光谱法对十个高度辐照的巨型系外行星的多种样本进行了对NA的均匀调查。我们的样本包括九个具有先前NA检测的行星和一个新检测。我们确认先前的检测并评估从高分辨率传输光谱中得出Na线特性的多种方法。相对于行星半径($ r _ {\ text {p}} $),使用同质测量的钠线深度来约束大气高度($ h _ {\ text {na}} $)。我们评估了一种描述相对大气高度的经验趋势($ h _ {\ text {na}}/r _ {\ text {p}} $)作为行星平衡温度的函数($ t _ {\ t _ {\ text {eq}}}} $($ g $) $ h _ {\ text {na}}/r _ {\ text {p}} $用$ξ\ propto gt _ {\ propto gt _ {\ text {eq}} $呈指数下降,在大$ξ$上接近常数。我们还报告了样品中D2/D1线比的钠比率,发现七个目标的线比与统一一致。最后,我们测量了所有十个行星的剩余框架波长的钠吸收线的净蓝光偏移,对应于几公里S $ s $^{ - 1} $的昼夜风速度。这表明,广泛的系外行星样本共享负责大气动态的共同基础过程。我们的研究强调了使用高分辨率传播光谱法,以进一步了解大气特征如何在各种外部行星样本中变化。

The alkali metal sodium (Na) is one of the most commonly detected chemical species in the upper atmospheres of giant exoplanets. In this work we conducted a homogeneous survey of Na in a diverse sample of ten highly irradiated giant exoplanets using high-resolution transmission spectroscopy. Our sample includes nine planets with previous Na detections and one new detection. We confirm previous detections and assess multiple approaches for deriving Na line properties from high-resolution transmission spectra. The homogeneously measured sodium line depths were used to constrain the atmospheric heights ($H_{\text{Na}}$) with respect to the planetary radii ($R_{\text{p}}$). We assess an empirical trend describing the relative atmospheric height ($H_{\text{Na}}/R_{\text{p}}$) as a function of planetary equilibrium temperature ($T_{\text{eq}}$) and surface gravity ($g$), in which $H_{\text{Na}}/R_{\text{p}}$ decreases exponentially with $ξ\propto gT_{\text{eq}}$, approaching a constant at large $ξ$. We also report the sodium D2/D1 line ratios across our sample and find that seven targets have line ratios that are consistent with unity. Finally, we measured net blueshifted offsets of the sodium absorption lines from their rest frame wavelengths for all ten planets, corresponding to day-night wind velocities of a few km s$^{-1}$. This suggests that the broad sample of exoplanets share common underlying processes that govern atmospheric dynamics. Our study highlights a promising avenue for using high-resolution transmission spectroscopy to further our understanding of how atmospheric characteristics vary over a diverse sample of exoplanets.

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