The upper atmosphere of the exoplanet HD209458b revealed by the sodium D lines: Temperature-pressure profile, ionization layer, and thermosphere
A. Vidal-Madjar, D.K. Sing, A. Lecavelier des Etangs, R. Ferlet, J.-M., Desert, G. Hebrard, I. Boisse, D. Ehrenreich, C. Moutou

TL;DR
This study uses high-resolution spectral data to map the temperature-pressure profile of HD209458b's atmosphere, revealing a thermosphere, sodium ionization, and temperature variations consistent with atmospheric escape models.
Contribution
It provides the first detailed temperature-pressure profile of HD209458b's atmosphere derived from NaI line analysis, highlighting a thermosphere and sodium ionization effects.
Findings
Identification of a thermosphere at ~2500K
Detection of sodium ionization at high altitudes
Confirmation of sodium condensation at 3 mbar
Abstract
A complete reassessment of the HST observations of the transits of the extrasolar planet HD209458b has provided a transmission spectrum of the atmosphere over a wide range of wavelengths. Analysis of the NaI absorption line profile has already shown that the sodium abundance has to drop by at least a factor of ten above a critical altitude. Here we analyze the profile in the deep core of the NaI doublet line from HST and high-resolution ground-based spectra to further constrain the vertical structure of the HD209458b atmosphere. With a wavelength-dependent cross section that spans more than 5 orders of magnitude, we use the absorption signature of the NaI doublet as an atmospheric probe. The NaI transmission features are shown to sample the atmosphere of HD209458b over an altitude range of more than 6500km, corresponding to a pressure range of 14 scale heights spanning 1 millibar to…
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