arXiv · 0811.2496
Diversity among other worlds: characterization of exoplanets by direct detection
Abstract
The physical characterization of exoplanets will require to take spectra at several orbital positions. For that purpose, a direct imaging capability is necessary. Direct imaging requires an efficient stellar suppression mechanism, associated with an ultrasmooth telescope. We show that before future large space missions (interferometer, 4-8 m class coronograph, external occulter or Fresnel imager), direct imaging of giant planets and close-by super-Earth are at the cross-road of a high scientific interest and a reasonable feasibility. The scientific interest lies in the fact that super-Earths share common geophysical attributes with Earths. They already begin to be detected by radial velocity (RV) and, together with giant planets, they have a larger area than Earths, making them detectable with a 1.5-2 m class telescope in reflected light. We propose such a (space) telescope be a first step before large direct imaging missions.
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J. Schneider, A. Boccaletti, A. Aylward, P. Baudoz, J. -L. Beuzit, R. Brown, J. Cho, K. Dohlen, M. Ferrari, R. Galicher, O. Grasset, L. Grenfell, J. -M. Griessmeier, O. Guyon, J. Hough, M. Kasper, Ch. Keller, A. Longmore, B. Lopez, E. Martin, D. Mawet, F. Menard, B. Merin, E. Palle, G. Perrin, D. Pinfield, E. Sein, P. Shore, Ch. Sotin, A. Sozzetti, D. Stam, J. Surdej, F. Tamburini, G. Tinetti, S. Udry, C. Verinaud, D. Walker. 2008-12-04. Diversity among other worlds: characterization of exoplanets by direct detection. https://arxiv.org/abs/0811.2496
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