Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres has so far been dominated by a small number of exoplanets and data spanning relatively narrow wavelength ranges (such as 1.1–1.7 micrometres). Recent studies show that some hot-Jupiter exoplanets have much weaker water absorption features in their near-infrared spectra than predicted1–5. The low amplitude of water signatures could be explained by very low water abundances6–8, which may be a sign that water was depleted in the protoplanetary disk at the planet’s formation location9, but it is unclear whether this level of depletion can actually occur. Alternatively, these weak signals could be the result of obscuration by clouds or hazes1–4, a...
The transmission spectra of ultra-hot Jupiters observed shortward of 0.5 mu m indicate strong absorp...
The composition and structure of hot Jupiter atmospheres provide a fossil record of their primordial...
Clouds play an important role in the atmospheres of planetary bodies. It is expected that, like all ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
PublishedLetterThousands of transiting exoplanets have been discovered, but spectral analysis of the...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
International audienceWater is predicted to be among the most abundant (if not the most abundant) mo...
International audienceWater is predicted to be among the most abundant (if not the most abundant) mo...
Copyright © 2007 Nature Publishing GroupWater is predicted to be among the most abundant (if not the...
Water is predicted to be among the most abundant (if not the most abundant) molecular species after ...
Water is predicted to be among the most abundant (if not the most abundant) molecular species after ...
The transmission spectra of ultra-hot Jupiters observed shortward of 0.5 mu m indicate strong absorp...
The composition and structure of hot Jupiter atmospheres provide a fossil record of their primordial...
Clouds play an important role in the atmospheres of planetary bodies. It is expected that, like all ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
PublishedLetterThousands of transiting exoplanets have been discovered, but spectral analysis of the...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
Thousands of transiting exoplanets have been discovered, but spectral analysis of their atmospheres ...
International audienceWater is predicted to be among the most abundant (if not the most abundant) mo...
International audienceWater is predicted to be among the most abundant (if not the most abundant) mo...
Copyright © 2007 Nature Publishing GroupWater is predicted to be among the most abundant (if not the...
Water is predicted to be among the most abundant (if not the most abundant) molecular species after ...
Water is predicted to be among the most abundant (if not the most abundant) molecular species after ...
The transmission spectra of ultra-hot Jupiters observed shortward of 0.5 mu m indicate strong absorp...
The composition and structure of hot Jupiter atmospheres provide a fossil record of their primordial...
Clouds play an important role in the atmospheres of planetary bodies. It is expected that, like all ...