Scaling K2 VII: Evidence for a high occurrence rate of hot sub-Neptunes at intermediate ages
arXiv:2311.18709 · doi:10.3847/1538-3881/acf9f9
Abstract
The NASA K2 mission obtained high precision time-series photometry for four young clusters, including the near-twin 600-800 Myr-old Praesepe and Hyades clusters. Hot sub-Neptunes are highly prone to mass-loss mechanisms, given their proximity to the the host star and the weakly bound gaseous envelopes, and analyzing this population at young ages can provide strong constraints on planetary evolution models. Using our automated transit detection pipeline, we recover 15 planet candidates across the two clusters, including 10 previously confirmed planets. We find a hot sub-Neptune occurrence rate of 79-107% for GKM stars in the Praesepe cluster. This is 2.5-3.5 sigma higher than the occurrence rate of 16.54+1.00-0.98% for the same planets orbiting the ~3-9 Gyr-old GKM field stars observed by K2, even after accounting for the slightly super-solar metallicity ([Fe/H]~0.2 dex) of the Praesepe cluster. We examine the effect of adding ~100 targets from the Hyades cluster, and extending the planet parameter space under examination, and find similarly high occurrence rates in both cases. The high occurrence rate of young, hot sub-Neptunes could indicate either that these planets are undergoing atmospheric evolution as they age, or that planetary systems that formed when the Galaxy was much younger are substantially different than from today. Under the assumption of the atmospheric mass-loss scenario, a significantly higher occurrence rate of these planets at the intermediate ages of Praesepe and Hyades appears more consistent with the core-powered mass loss scenario sculpting the hot sub-Neptune population, compared to the photoevaporation scenario.
14 pages, 6 figures, published in AJ
References in corpus (27)
- The K2 Mission: Characterization and Early results
- The Evolution of the Star-forming Interstellar Medium across Cosmic Time
- Density, not radius, separates rocky and water-rich small planets orbiting M dwarf stars
- Planetary Candidates Observed by Kepler VI: Planet Sample from Q1-Q16 (47 Months)
- EVEREST: Pixel Level Decorrelation of K2 Light curves
- The Gaia-Kepler Stellar Properties Catalog. II. Planet Radius Demographics as a Function of Stellar Mass and Age
- The Age and Age Spread of the Praesepe and Hyades Clusters: a Consistent, ~800 Myr Picture from Rotating Stellar Models
- Zodiacal Exoplanets in Time (ZEIT) IV: seven transiting planets in the Praesepe cluster
- The Ages of Early-Type Stars: Strömgren Photometric Methods Calibrated, Validated, Tested, and Applied to Hosts and Prospective Hosts of Directly Imaged Exoplanets
- Photoevaporation vs. core-powered mass-loss: model comparison with the 3D radius gap
- Scaling K2. I. Revised Parameters for 222,088 K2 Stars and a K2 Planet Radius Valley at 1.9
- Accounting for Incompleteness due to Transit Multiplicity in Kepler Planet Occurrence Rates
- Zodiacal Exoplanets in Time (ZEIT) VI: a three-planet system in the Hyades cluster including an Earth-sized planet
- K2 Discovers a Busy Bee: An Unusual Transiting Neptune Found in the Beehive Cluster
- Effects of Different Cosmic Ray Transport Models on Galaxy Formation
- A 3D view of the Hyades stellar and sub-stellar population
- Evolution of giant molecular clouds across cosmic time
- Planet Candidates from K2 Campaigns 5-8 and Follow-Up Optical Spectroscopy
- Caught in the Act: Core-powered Mass-loss Predictions for Observing Atmospheric Escape
- Scaling K2. VI. Reduced Small Planet Occurrence in High Galactic Amplitude Stars
- Stellar population astrophysics (SPA) with the TNG. Revisiting the metallicity of Praesepe (M44)
- Further Evidence of Modified Spin-down in Sun-like Stars: Pileups in the Temperature-Period Distribution
- Scaling K2. II. Assembly of a Fully Automated C5 Planet Candidate Catalog Using EDI-Vetter
- The Influence of Age on the Relative Frequency of Super-Earths and Sub-Neptunes
- Scaling K2. III. Comparable Planet Occurrence in the FGK Samples of Campaign 5 and Kepler
- Most Stars (and Planets?) Are Born in Intense Radiation Fields
- Mapping out the parameter space for photoevaporation and core-powered mass-loss
Cited by in corpus (7)
- The MOPYS project: A survey of 70 planets in search of extended He I and H atmospheres. No evidence of enhanced evaporation in young planets
- A primordial radius valley as a consequence of planet formation
- Small and Close-In Planets are Uncommon Around A-type Stars
- Scaling K2 VIII: Short-Period Sub-Neptune Occurrence Rates Peak Around Early-Type M Dwarfs
- Exoplanet Occurrence Rate with Age for FGK Stars in Kepler
- A Validated Low-to-Intermediate Mass Planetary Interior Structure Model and New Mass-Radius Relations
- Characterizing the bolometric-photoevaporative transition in young sub-Neptunes with radiation-hydrodynamic simulations