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Influence of the inclination damping on the formation of planetary systems

Published online by Cambridge University Press:  05 January 2015

Sotiris Sotiriadis
Affiliation:
naXys, Department of Mathematics, University of Namur, Belgium email: sotiris.sotiriadis@unamur.be, anne-sophie.libert@unamur.be
Anne-Sophie Libert
Affiliation:
naXys, Department of Mathematics, University of Namur, Belgium email: sotiris.sotiriadis@unamur.be, anne-sophie.libert@unamur.be
Kleomenis Tsiganis
Affiliation:
Department of Physics, Aristotle University of Thessaloniki, Greece email: tsiganis@auth.gr
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Abstract

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Highly non-coplanar extrasolar systems (e.g. Upsilon Andromedae) and unexpected spin-orbit misalignment of some exoplanets have been discovered. In Libert and Tsiganis (2011), a significant increase of the mutual inclination of some multi-planet systems has been observed during the type II migration, as a result of planet-planet scattering and/or resonant interactions between the planets. Here we investigate the effect of the inclination damping due to planet-disk interactions on the previous results, for a variety of planetary systems with different initial configurations and mass ratios. Using the damping formulae for eccentricity and inclination provided by the numerical hydrodynamical simulations of Bitsch et al. (2013), we examine their impact on the possible multiple resonances between the planets and how the growth in eccentricity and inclination is affected.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2014 

References

Bitsch, B., Crida, A., Libert, A.-S., & Lega, E. 2013, A&A, 555Google Scholar
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