WASP-4 transit timing variation from a comprehensive set of 129 transits
arXiv:2004.09109 · doi:10.1093/mnrasl/slaa069
Abstract
We homogeneously reanalyse transit light curves for the WASP-4 b hot Jupiter. This set involved new observations secured in 2019 and nearly all observations mentioned in the literature, including high-accuracy GEMINI/GMOS transmission spectroscopy of 2011-2014 and TESS observations of 2018. The analysis confirmed a nonlinear TTV trend with Myr (1-sigma range), implying only half of the initial decay rate estimation. The trend significance is at least -sigma in the agressively conservative treatment. Possible radial acceleration due to unseen companions is not revealed in Doppler data covering seven years 2007-2014, and radial acceleration of m syr reported in a recent preprint by another team is not confirmed. If present, it is a very nonlinear RV variation. Assuming that the entire TTV is tidal in nature, the tidal quality factor does not reveal a convincing disagreement with available theory predictions.
Accepted to MNRAS Letters. 5 pages, 1 figure. TTV data files and an online-only PDF supplement are in the download archive
References in corpus (8)
- Improved parameters for the transiting hot Jupiters WASP-4b and WASP-5b
- WASP-4b: a 12th-magnitude transiting hot-Jupiter in the Southern hemisphere
- Accounting for velocity jitter in planet search surveys
- Benchmarking the power of amateur observatories for TTV exoplanets detection
- WASP-4b Arrived Early for the TESS Mission
- Enhanced models for stellar Doppler noise reveal hints of a 13-year activity cycle of 55 Cancri
- WASP-4 is Accelerating Toward the Earth
- Gemini/GMOS Transmission Spectral Survey: Complete Optical Transmission Spectrum of the hot Jupiter WASP-4b
Cited by in corpus (9)
- ExoClock Project III: 450 new exoplanet ephemerides from ground and space observations
- Discovery and characterization of the exoplanets WASP-148b and c. A transiting system with two interacting giant planets
- Examining the orbital decay targets KELT-9 b, KELT-16 b and WASP-4 b, and the transit-timing variations of HD 97658 b
- Evidence of Long-Term Period Variations in the Exoplanet Transit Database (ETD)
- TESS Observations of the Hot Jupiter Exoplanet XO-6b: No Evidence of Transit Timing Variations
- The apparent tidal decay of WASP-4 b can be explained by the Rømer effect
- A search for transit timing variations in the HATS-18 planetary system
- The impact of photospheric brightness field on exoplanetary transit timings and the TTV excess of HD 189733 b
- Characterizing the WASP-4 system with TESS and radial velocity data: Constraints on the cause of the hot Jupiter's changing orbit and evidence of an outer planet