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Mean-Motion Resonances of High Order in Extrasolar Planetary Systems

Published online by Cambridge University Press:  19 April 2010

H. Rein*
Affiliation:
Department of Applied Mathematics and Theoretical Physics; University of Cambridge, UK
J. C.B. Papaloizou
Affiliation:
Department of Applied Mathematics and Theoretical Physics; University of Cambridge, UK
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Abstract

Many multi-planet systems have been discovered in recent years. Some of them are in mean-motion resonances (MMR). Planet formation theory was successful in explaining the formation of 2:1, 3:1 and other low resonances as a result of convergent migration. However, higher order resonances require high initial orbital eccentricities in order to be formed by this process and these are in general unexpected in a dissipative disk. We present a way of generating large initial eccentricities using additional planets. This precedure allows us to form high order MMRs and predict new planets using a genetic N-body code.

Type
Research Article
Copyright
© EAS, EDP Sciences, 2010

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References

Schneider, J., 2008, http://exoplanet.eu
Anglada-Escude, G., Lopez-Morales, M., & Chambers, J.E., 2008, ApJL, submitted [arXiv:0809.1275]
Beaugé, C., Callegari, N., Ferraz-Mello, S., & Michtchenko, T.A., 2005, IAU Colloquium, 197
Lee, M.H., & Peale, S.J., 2002, ApJ, 567, 596 CrossRef
Nelson, R., & Papaloizou, J., 2002, MNRAS, 333, L26-L30 CrossRef
Papaloizou, J., & Szuszkiewicz, E., 2005, MNRAS, 363, 153 CrossRef
Rein, H., & Papaloizou, J., 2009, A&A, 497, 595
Raymond, S.N., Barnes, R., Armitage, P.J., & Gorelick, N., 2009, ApJ, 696, L98 CrossRef
Butler, R.P., et al., ApJ, 646, 505
Vogt, S.S., et al., ApJ, 632, 638