A possible correlation between planetary radius and orbital period for small planets
arXiv:1510.04564 · doi:10.1093/mnrasl/slv158
Abstract
We suggest the existence of a correlation between the planetary radius and orbital period for planets with radii smaller than 4 R_Earth. Using the Kepler data, we find a correlation coefficient of 0.5120, and suggest that the correlation is not caused solely by survey incompleteness. While the correlation coefficient could change depending on the statistical analysis, the statistical significance of the correlation is robust. Further analysis shows that the correlation originates from two contributing factors. One seems to be a power-law dependence between the two quantities for intermediate periods (3-100 days), and the other is a dearth of planets with radii larger than 2 R_Earth in short periods. This correlation may provide important constraints for small-planet formation theories and for understanding the dynamical evolution of planetary systems.
accepted for publication in MNRAS Letters
References in corpus (4)
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- A Statistical Reconstruction of the Planet Population Around Kepler Solar-Type Stars
- Occurrence and core-envelope structure of 1--4x Earth-size planets around Sun-like stars
- A Possible Correlation between Mass Ratio and Period Ratio in Multiple Planetary Systems
Cited by in corpus (17)
- Dearth of short-period Neptunian exoplanets - a desert in period-mass and period-radius planes
- A Spectroscopic Analysis of the California-Kepler Survey Sample: I. Stellar Parameters, Planetary Radii and a Slope in the Radius Gap
- The XUV environments of exoplanets from Jupiter-size to super-Earth
- Mapping the exo-Neptunian landscape. A ridge between the desert and savanna
- TOI-431/HIP 26013: a super-Earth and a sub-Neptune transiting a bright, early K dwarf, with a third RV planet
- TESS Reveals a Short-period Sub-Neptune Sibling (HD 86226c) to a Known Long-period Giant Planet
- TOI-5005 b: A super-Neptune in the savanna near the ridge
- TOI-132 b: A short-period planet in the Neptune desert transiting a G-type star
- Hidden Worlds: Dynamical Architecture Predictions of Undetected Planets in Multi-planet Systems and Applications to TESS Systems
- The SOPHIE search for northern extrasolar planets XV. A Warm Neptune around the M-dwarf Gl378
- The K2-ESPRINT Project VI: K2-105 b, a Hot-Neptune around a Metal-rich G-dwarf
- HST PanCET program: Non-detection of atmospheric escape in the warm Saturn-sized planet WASP-29 b
- TOI-2498 b: A hot bloated super-Neptune within the Neptune desert
- Different types of star-planet interactions
- A high stellar multiplicity rate amongst TESS planet candidates in the Neptunian desert using Gaia DR3 astrometry
- The strongly irradiated planets in Praesepe
- On the Ordering of Exoplanet Systems