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      TRANSMISSION SPECTROSCOPY OF EXOPLANET XO-2b OBSERVED WITHHUBBLE SPACE TELESCOPENICMOS

      , , ,
      The Astrophysical Journal
      IOP Publishing

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          The presence of methane in the atmosphere of an extrasolar planet.

          Molecules present in the atmospheres of extrasolar planets are expected to influence strongly the balance of atmospheric radiation, to trace dynamical and chemical processes, and to indicate the presence of disequilibrium effects. As molecules have the potential to reveal atmospheric conditions and chemistry, searching for them is a high priority. The rotational-vibrational transition bands of water, carbon monoxide and methane are anticipated to be the primary sources of non-continuum opacity in hot-Jupiter planets. As these bands can overlap in wavelength, and the corresponding signatures from them are weak, decisive identification requires precision infrared spectroscopy. Here we report a near-infrared transmission spectrum of the planet HD 189733b that shows the presence of methane. Additionally, a resolved water vapour band at 1.9 mum confirms the recent claim of water in this object. On thermochemical grounds, carbon monoxide is expected to be abundant in the upper atmosphere of hot-Jupiter planets, but is not identifiable here; therefore the detection of methane rather than carbon monoxide in such a hot planet could signal the presence of a horizontal chemical gradient away from the permanent dayside, or it may imply an ill-understood photochemical mechanism that leads to an enhancement of methane.
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            Transmission Spectra as Diagnostics of Extrasolar Giant Planet Atmospheres

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              MOLECULAR SIGNATURES IN THE NEAR-INFRARED DAYSIDE SPECTRUM OF HD 189733b

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                Author and article information

                Journal
                The Astrophysical Journal
                ApJ
                IOP Publishing
                0004-637X
                1538-4357
                December 10 2012
                December 10 2012
                November 19 2012
                : 761
                : 1
                : 7
                Article
                10.1088/0004-637X/761/1/7
                e075b643-7c39-4e43-996f-8de3303a5f34
                © 2012
                History

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