The apparent tidal decay of WASP-4 b can be explained by the Rømer effect
arXiv:2311.07098 · doi:10.3390/universe9120506
Abstract
Tidal orbital decay plays a vital role in the evolution of hot Jupiter systems. As of now, this was only observationally confirmed for the WASP-12 system. There are a few other candidates, including WASP-4 b, but no conclusive result could be obtained for these systems as of yet. In this study, we present an analysis of new TESS data of WASP-4 b together with archival data, taking the light-time effect (LTE), induced by the second planetary companion, into account as well. We make use of three different Markov-Chain-Monte-Carlo models; a circular orbit with a constant orbital period, a circular orbit with a decaying orbit, and an elliptical orbit with apsidal precession. This analysis is repeated for four cases. The first case features no LTE correction, with the remaining three cases featuring three different timing correction approaches. Comparison of these models yields no conclusive answer to the cause of WASP-4\,b's apparent transit timing variations. A broad range of values of the orbital decay and apsidal precession parameters are possible, depending on the LTE correction. This work highlights the importance of continued photometric and spectroscopic monitoring of hot Jupiters.
Submitted to /Universe/, Special Issue "The Royal Road: Eclipsing Binaries and Transiting Exoplanets"
References in corpus (16)
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Tidal dissipation in stars and giant planets
- The Orbit of WASP-12b is Decaying
- WASP-4b: a 12th-magnitude transiting hot-Jupiter in the Southern hemisphere
- TESS Transit Timing of Hundreds of Hot Jupiters
- WASP-4b Arrived Early for the TESS Mission
- Decaying Orbit of the Hot Jupiter WASP-12b: Confirmation with TESS Observations
- Carbon monoxide emission lines reveal an inverted atmosphere in the ultra hot Jupiter WASP-33 b consistent with an eastward hot spot
- Exploring the Dependence of Hot Jupiter Occurrence Rates on Stellar Mass with TESS
- ExoClock project II: A large-scale integrated study with 180 updated exoplanet ephemerides
- TESS Revisits WASP-12: Updated Orbital Decay Rate and Constraints on Atmospheric Variability
- Variability in the Atmosphere of the Hot Jupiter Kepler-76b
- TESS Giants Transiting Giants II: The hottest Jupiters orbiting evolved stars
- Examining the orbital decay targets KELT-9 b, KELT-16 b and WASP-4 b, and the transit-timing variations of HD 97658 b
- The phase curve and the geometric albedo of WASP-43b measured with CHEOPS, TESS and HST WFC3/UVIS
- Thermal Emission from the hot Jupiter WASP-103b in J and Ks Bands
Cited by in corpus (5)
- Evidence of apsidal motion and a possible co-moving companion star detected in the WASP-19 system
- Characterizing WASP-43b's interior structure: unveiling tidal decay and apsidal motion
- A close outer companion to the ultra-hot Jupiter TOI-2109 b?
- Yuti: A General-purpose Transit Simulator for Arbitrary Shaped Objects Orbiting Stars
- A search for transit timing variations in the transiting hot Jupiter systems HIP 65, NGTS-6, NGTS-10 and WASP-173