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Detectability of planetary rings around an extrasolar planet from reflected-light photometr
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Direct Imaging of Exoplanets: Science and Techniques
Proceedings IAU Colloquium No. 200, 2005
Claude Aime, Farrokh Vakili, eds.
c? 2005 International Astronomical Union
DOI: 00.0000/X000000000000000X
Detectability of planetary rings around an
extrasolar planet from reflected-light
photometry
L. Arnold1 and J. Schneider2
1CNRS - Observatoire de Haute-Provence 04870 Saint-Michel-l’Observatoire, France
email: arnold at obs-hp.fr
2Observatoire de Paris-Meudon, 92195, Meudon Cedex, France
email: Jean.Schneider at obspm.fr
Abstract. The next generation of high-contrast imaging instruments will provide the first unre-
solved image of an extrasolar planet. While the emitted infrared light from the planet in thermal
equilibrium should show almost no phase effect, the reflected visible light will vary with the or-
bital phase angle. We study the photometric variation of the reflected light with orbital phase
of a ringed extrasolar planet. We show that a ring around an extrasolar planet, both obviously
unresolved, can be detected by its specific photometric signature.
Keywords. Stars: planetary systems – Planets: rings – Extrasolar planet characterization
1. Introduction
The discovery of extrasolar planets by radial velocity measurements has provided the
first dynamical characteristics of planets (orbital elements and mass). The next step will
be to investigate physical characteristics of extrasolar (albedo, temperature, radius etc.)
and their surroundings. Among the latter are planetary rings. Coming space or ground-
based high-contrast imaging instruments will be able to provide the first image of an
unresolved extrasolar planet, in the thermal infrared or in the visible light. The emitted
thermal infrared light from the planet should show no phase effect assuming the planet
is in thermal equilibrium. But the reflected visible light will vary with phase angle, as
should be shown by a broad-band photometri
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