Phase-differential NIR integral field spectroscopy of transiting Hot Jupiters

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Abstract

Transiting exoplanets provide a unique opportunity for follow up exploration through phase-differential observation of their emission and transmission spectra. From such spectra immediate clues about the atmospheric composition and the planets chemistry can be drawn. Such information is of imminent importance for the theory of the formation of planets in general as well as for their particular evolution. Ground-based spectroscopy of exoplanet transits is a needful extension of results already obtained through space-based observations. We present results of an exploratory study to use near-infrared integral field spectroscopy to observe extrasolar planets. We demonstrate how adaptive optics-assisted integral field spectroscopy compares with other spectroscopic techniques currently applied. An advanced reduction method using elements of a spectral-differential decorrelation method is also discussed. We have tested our concept with a K-Band time series observations of HD209458b and HD189733b obtained with SINFONI at the VLT and OSIRIS at Keck during secondary transits at a spectral resolution of R = 3000. © 2009 International Astronomical Union.

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APA

Angerhausen, D., Krabbe, A., & Iserlohe, C. (2008). Phase-differential NIR integral field spectroscopy of transiting Hot Jupiters. In Proceedings of the International Astronomical Union (Vol. 4, pp. 552–555). https://doi.org/10.1017/S174392130802718X

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