The Impact of Bayesian Hyperpriors on the Population-Level Eccentricity Distribution of Imaged Planets
arXiv:2211.02121 · doi:10.3847/1538-3881/ac9fd2
Abstract
Orbital eccentricities directly trace the formation mechanisms and dynamical histories of substellar companions. Here, we study the effect of hyperpriors on the population-level eccentricity distributions inferred for the sample of directly imaged substellar companions (brown dwarfs and cold Jupiters) from hierarchical Bayesian modeling (HBM). We find that the choice of hyperprior can have a significant impact on the population-level eccentricity distribution inferred for imaged companions, an effect that becomes more important as the sample size and orbital coverage decrease to values that mirror the existing sample. We reanalyse the current observational sample of imaged giant planets in the 5-100 AU range from Bowler et al. (2020) and find that the underlying eccentricity distribution implied by the imaged planet sample is broadly consistent with the eccentricity distribution for close-in exoplanets detected using radial velocities. Furthermore, our analysis supports the conclusion from that study that long-period giant planets and brown dwarf eccentricity distributions differ by showing that it is robust to the choice of hyperprior. We release our HBM and forward modeling code in an open-source Python package, ePop!, and make it freely available to the community.
18 pages, 11 figures. Accepted for publication in The Astronomical Journal
References in corpus (8)
- The Gemini Planet Imager Exoplanet Survey: Giant Planet and Brown Dwarf Demographics From 10-100 AU
- Tidal dissipation in stars and giant planets
- Inferring the eccentricity distribution
- Population-Level Eccentricity Distributions of Imaged Exoplanets and Brown Dwarf Companions: Dynamical Evidence for Distinct Formation Channels
- orbitize!: A Comprehensive Orbit-fitting Software Package for the High-contrast Imaging Community
- First direct detection of an exoplanet by optical interferometry; Astrometry and K-band spectroscopy of HR8799 e
- Warm Jupiters in TESS Full-Frame Images: A Catalog and Observed Eccentricity Distribution for Year 1
- Reaching micro-arcsecond astrometry with long baseline optical interferometry; application to the GRAVITY instrument
Cited by in corpus (13)
- Astrometric Accelerations as Dynamical Beacons: A Giant Planet Imaged Inside the Debris Disk of the Young Star AF Lep
- Rotation Periods, Inclinations, and Obliquities of Cool Stars Hosting Directly Imaged Substellar Companions: Spin-Orbit Misalignments are Common
- The ESO SupJup Survey III: Confirmation of 13CO in YSES 1 b and Atmospheric Detection of YSES 1 c with CRIRES+
- Fresh view of the hot brown dwarf HD 984 B through high-resolution spectroscopy
- Atmospheric characterization of the super-Jupiter HIP 99770 b with KPIC
- The OATMEAL Survey. I. Low Stellar Obliquity in the Transiting Brown Dwarf System GPX-1
- RV-exoplanet eccentricities: Good, Beta, and Best
- Orbital Modeling of HII 1348B: An Eccentric Young Substellar Companion in the Pleiades
- Distinct Rotational Evolution of Giant Planets and Brown Dwarf Companions
- A New Brown Dwarf Orbiting an M star and An Investigation on the Eccentricity Distribution of Transiting Long-Period Brown Dwarfs
- SCExAO/CHARIS and Gaia Direct Imaging and Astrometric Discovery of a Superjovian Planet 3--4 lambda/D from the Accelerating Star HIP 54515
- Occurrence rates of accreting companions from a new method for computing emission-line survey sensitivity: application to the H-alpha Giant Accreting Protoplanet Survey
- Direct Images of CO2 Absorption in the Atmosphere of a Super-Jupiter: Enhanced Metallicity Suggestive of Formation in a Disk