Extreme orbital evolution from hierarchical secular coupling of two giant planets
arXiv:1310.5048 · doi:10.1088/0004-637X/779/2/166
Abstract
Observations of exoplanets over the last two decades have revealed a new class of Jupiter-size planets with orbital periods of a few days, the so-called "hot Jupiters". Recent measurements using the Rossiter-McLaughlin effect have shown that many (~ 50%) of these planets are misaligned; furthermore, some (~ 15%) are even retrograde with respect to the stellar spin axis. Motivated by these observations, we explore the possibility of forming retrograde orbits in hierarchical triple configurations consisting of a star-planet inner pair with another giant planet, or brown dwarf, in a much wider orbit. Recently Naoz et al. (2011) showed that in such a system, the inner planet's orbit can flip back and forth from prograde to retrograde, and can also reach extremely high eccentricities. Here we map a significant part of the parameter space of dynamical outcomes for these systems. We derive strong constraints on the orbital configurations for the outer perturber that could lead to the formation of hot Jupiters with misaligned or retrograde orbits. We focus only on the secular evolution, neglecting other dynamical effects such as mean-motion resonances, as well as all dissipative forces. For example, with an inner Jupiter-like planet initially on a nearly circular orbit at 5 AU, we show that a misaligned hot Jupiter is likely to be formed in the presence of a more massive planetary companion (> 2 MJ) within 140 AU of the inner system, with mutual inclination 50 degrees and eccentricity above 0.25. This is in striking contrast to the test-particle approximation, where an almost perpendicular configuration can still cause large eccentricity excitations, but flips of an inner Jupiter-like planet are much less likely to occur. The constraints we derive can be used to guide future observations, and, in particular, searches for more distant companions in systems containing a hot Jupiter.
To appear in the Astrophysical Journal
References in corpus (11)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Dynamical Outcomes of Planet-Planet Scattering
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Prospects for the Characterization and Confirmation of Transiting Exoplanets via the Rossiter-McLaughlin Effect
- Kepler constraints on planets near hot Jupiters
- Discovery of HE 1523-0901, a Strongly r-Process Enhanced Metal-Poor Star with Detected Uranium
- Direct Imaging and Spectroscopy of a Planetary Mass Candidate Companion to a Young Solar Analog
- Hot Jupiters in binary star systems
- Tidal evolution of hierarchical and inclined systems
- Planetary Systems in Binaries. I. Dynamical Classification
- Interaction between massive planets on inclined orbits and circumstellar discs
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- Friends of Hot Jupiters II: No Correspondence Between Hot-Jupiter Spin-Orbit Misalignment and the Incidence of Directly Imaged Stellar Companions
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- Dynamical Formation of Close Binaries During the Pre-main-sequence Phase
- The evolution of stellar triples: The most common evolutionary pathways
- Large eccentricity, low mutual inclination: the three-dimensional architecture of a hierarchical system of giant planets
- The impact of vector resonant relaxation on the evolution of binaries near a massive black hole: implications for gravitational wave sources
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- Secular dynamics of hierarchical multiple systems composed of nested binaries, with an arbitrary number of bodies and arbitrary hierarchical structure. First applications to multiplanet and multistar systems
- A triple origin for the lack of tight coplanar circumbinary planets around short-period binaries
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- Stellar triples on the edge; Comprehensive overview of the evolution of destabilised triples leading to stellar and binary exotica
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- Quiescent and active galactic nuclei as factories of merging compact objects in the era of gravitational-wave astronomy
- The JADE code: Coupling secular exoplanetary dynamics and photo-evaporation
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- Gravitational-Wave Signatures from Compact Object Binaries in the Galactic Center
- Hidden Planetary Friends: On the Stability Of 2-Planet Systems in the Presence of a Distant, Inclined Companion
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- Gravitational Waves from Hierarchical Triple Systems with Kozai-Lidov Oscillation
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- Evolution of massive stellar triples and implications for compact object binary formation
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- Planet Hunters TESS IV: A massive, compact hierarchical triple star system TIC 470710327
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- Kepler-1656b's Extreme Eccentricity: Signature of a Gentle Giant
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- TOI-3362b: A Proto-Hot Jupiter Undergoing High-Eccentricity Tidal Migration
- Breaking the Mass Inclination Degeneracy of Radial Velocity Measurements via Monitoring von Zeipel-Lidov-Kozai Cycles: Implications in the HD 41004 System
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