Planet–planet scattering in the upsilon Andromedae system
- 1 April 2005
- journal article
- Published by Springer Nature in Nature
- Vol. 434 (7035) , 873-876
- https://doi.org/10.1038/nature03427
Abstract
Doppler spectroscopy has detected 136 planets around nearby stars. A major puzzle is why their orbits are highly eccentric, while all planets in our Solar System are on nearly circular orbits, as expected if they formed by accretion processes in a protostellar disk. Several mechanisms have been proposed to generate large eccentricities after planet formation, but so far there has been little observational evidence to support any particular one. Here we report that the current orbital configuration of the three giant planets around Upsilon Andromedae (ups And) provides evidence for a close dynamical interaction with another planet, now lost from the system. The planets started on nearly circular orbits, but chaotic evolution caused the outer planet (ups And d) to be perturbed suddenly into a higher-eccentricity orbit. The coupled evolution of the system then causes slow periodic variations in the eccentricity of the middle planet (ups And c). Indeed, we show that ups And c periodically returns to a very nearly circular state every 9000 years. Our analysis shows that strong planet-planet scattering, one of several mechanisms previously discussed for increasing orbital eccentricities, must have operated in this system.Comment: 14 pages, accepted for publication in Nature, press embargoed until publication (late March), includes supplementary materiaKeywords
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This publication has 18 references indexed in Scilit:
- A Planetary Companion to HD 40979 and Additional Planets Orbiting HD 12661 and HD 38529The Astrophysical Journal, 2003
- A Dynamical Mechanism for Establishing Apsidal ResonanceThe Astrophysical Journal, 2002
- Apsidal Alignment in υ AndromedaeThe Astronomical Journal, 2001
- Stability Analysis of the Planetary System Orbiting υ Andromedae. II. Simulations Using New Lick Observatory FitsThe Astrophysical Journal, 2001
- Dynamical Instabilities in Extrasolar Planetary Systems Containing Two Giant PlanetsIcarus, 2001
- The υ Andromedae System: Models and StabilityThe Astrophysical Journal, 2000
- Chaotic variations in the eccentricity of the planet orbiting 16 Cygni BNature, 1997
- Gravitational scattering as a possible origin for giant planets at small stellar distancesNature, 1996
- Dynamical Instabilities and the Formation of Extrasolar Planetary SystemsScience, 1996
- Tidal Decay of Close Planetary OrbitsThe Astrophysical Journal, 1996