Properties of the single Jovian planet population and the pursuit of Solar system analogues
arXiv:1804.06547 · doi:10.1093/mnras/sty868
Abstract
While the number of exoplanets discovered continues to increase at a rapid rate, we are still to discover any system that truly resembles the Solar system. Existing and near future surveys will likely continue this trend of rapid discovery. To see if these systems are Solar system analogues, we will need to efficiently allocate resources to carry out intensive follow-up observations. We seek to uncover the properties and trends across systems that indicate how much of the habitable zone is stable in each system to provide focus for planet hunters. We study the dynamics of all known single Jovian planetary systems, to assess the dynamical stability of the habitable zone around their host stars. We perform a suite of simulations of all systems where the Jovian planet will interact gravitationally with the habitable zone, and broadly classify these systems. Besides the system's mass ratio (Mpl/Mstar), and the Jovian planet's semi-major axis (apl) and eccentricity (epl), we find that there are no underlying system properties which are observable that indicate the potential for planets to survive within the system's habitable zone. We use Mpl/Mstar, apl and epl to generate a parameter space over which the unstable systems cluster, thus allowing us to predict which systems to exclude from future observational or numerical searches for habitable exoplanets. We also provide a candidate list of 20 systems that have completely stable habitable zones and Jovian planets orbiting beyond the habitable zone as potential first order Solar system analogues.
14 pages, 10 figures
References in corpus (11)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- Water Delivery and Giant Impacts in the 'Grand Tack' Scenario
- Jupiter - friend or foe? I: the asteroids
- Is the Grand Tack model compatible with the orbital distribution of main belt asteroids?
- The Effect of Planets Beyond the Ice Line on the Accretion of Volatiles by Habitable-Zone Rocky Planets
- MAMBO image of the debris disk around epsilon Eridani : robustness of the azimuthal structure
- Modelling the Inner Debris Disc of HR 8799
- Stable habitable zones of single Jovian planet systems
- Aliases of the first eccentric harmonic : Is GJ 581g a genuine planet candidate?
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- Solar System Physics for Exoplanet Research
- The eccentricity distribution of giant planets and their relation to super-Earths in the pebble accretion scenario
- The Pan-Pacific Planet Search. VIII. Complete results and the occurrence rate of planets around low-luminosity giants
- Revised Exoplanet Radii and Habitability Using Gaia Data Release 2
- Quantifying the Influence of Jupiter on the Earth's Orbital Cycles
- Chemical Composition Of Bright Stars In The Northern Hemisphere: Star-Planet Connection
- Prospecting for exo-Earths in multiple planet systems with a gas giant
- Predicting multiple planet stability and habitable zone companions in the TESS era
- Stellar encounters with giant molecular clouds
- Resilient habitability of nearby exoplanet systems
- Effects of capturing a wide-orbit planet on planetary systems: system stability and Habitable Zone bombardment rates