Optimization Applied to Selected Exoplanets
arXiv:2108.10804 · doi:10.1007/s12036-021-09779-3
Abstract
Transit and radial velocity models were applied to archival data in order to examine exoplanet properties, in particular for the recently discovered super-Earth GJ 357b. There is however considerable variation in estimated model parameters across the literature, and especially their uncertainty estimates. This applies even for relatively uncomplicated systems and basic parameters. Some published accuracy values thus appear highly over-optimistic. We present our reanalyses with these variations in mind and specify parameters with appropriate confidence intervals for the exoplanets Kepler-1b, -2b, -8b, -12b, -13b, -14b, -15b, -40b \& -77b and 51 Peg. More sophisticated models in WinFitter, EXOFAST, and DACE were applied, leading to mean planet densities for Kepler-12b, -14b, -15b, and -40b as: , , , and g per cc respectively. We confirm a rocky mean density for the Earth-like GJ357b, although we urge caution about the modelling given the low S/N data. We cannot confidently specify parameters for the other two proposed planets in this system.
Accepted by Journal of Astrophysics and Astronomy
References in corpus (8)
- EXOFAST: A fast exoplanetary fitting suite in IDL
- Assessing statistical significance of periodogram peaks
- PASTIS: Bayesian extrasolar planet validation. I. General framework, models, and performance
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- TrES-2: The First Transiting Planet in the Kepler Field
- Analytic solutions to the maximum and average exoplanet transit depth for common stellar limb darkening laws
- An Investigation into Exoplanet Transits and Uncertainties
- The California Legacy Survey I. A Catalog of 178 Planets from Precision Radial Velocity Monitoring of 719 Nearby Stars over Three Decades