2012Astronomy and AstrophysicsOpen access

Active optics methods for exoplanet direct imaging

Emmanuel Hugot, Marc Ferrari, Kacem El Hadi, A. Costille, Kjetil Dohlen, Patrick Rabou, P. Puget, Jean-Luc Beuzit

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Abstract

Context. The next generation of exoplanet hunters will be targeting hot Jupiter-like exoplanets orbiting around nearby stars through direct imaging. The high contrast needed for such planet finders requires optical surfaces free of high spatial frequency ripples that might remain in the post-coronagraphic image as quasi-static speckles.

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Context. The next generation of exoplanet hunters will be targeting hot Jupiter-like exoplanets orbiting around nearby stars through direct imaging. The high contrast needed for such planet finders requires optical surfaces free of high spatial frequency ripples that might remain in the post-coronagraphic image as quasi-static speckles.

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Available abstract

Context. The next generation of exoplanet hunters will be targeting hot Jupiter-like exoplanets orbiting around nearby stars through direct imaging. The high contrast needed for such planet finders requires optical surfaces free of high spatial frequency ripples that might remain in the post-coronagraphic image as quasi-static speckles.

Key concepts: Exoplanet, Physics, Direct imaging, Speckle pattern, Planet, Context (archaeology), Astronomy, Coronagraph

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