Tentative Evidence for Transit Timing Variations of WASP-161b
arXiv:2204.12306 · doi:10.3847/1538-3881/ac9e50
Abstract
We report on the detection of transit timing variations (TTV) of WASP-161b by using the combination of TESS data and archival data. The midpoint of the transits in TESS data are offset by 67 minutes in Jan. 2019, and 203 minutes in Jan. 2021, based on the ephemeris published in previous work. We are able to reproduce the transit timings from the archival light curve (SSO-Europa; Jan. 2018) and find SSO-Europa timing is consistent with the published ephemeris under a constant period assumption. Conversely, we find that the SSO-Europa transit midpoint indicates a 6.62-minute variation at 4.40 compared to the prediction obtained from TESS timings, and a constant orbit period assumption. The TTVs could be modeled with a quadratic function, yielding a constant period change. The period derivative is -1.16102.2510 days per day (or s/year), derived from SSO-Europa and TESS timing. Different scenarios, including a decaying period and apsidal precession can potentially explain these TTVs but they both introduce certain inconsistencies. We have obtained CHEOPS observations for two transits in Jan. 2022 to distinguish between different TTV scenarios. We expect the timing to vary by 5 minutes, compared to the timing predicted from SSO-Europa and TESS with a constant period assumption.
Accepted for publication (AJ)
References in corpus (13)
- The Transiting Exoplanet Survey Satellite
- The K2 Mission: Characterization and Early results
- DHP Framework: Digital Health Passports Using Blockchain -- Use case on international tourism during the COVID-19 pandemic
- EXOFAST: A fast exoplanetary fitting suite in IDL
- Long-term tidal evolution of short-period planets with companions
- The Orbit of WASP-12b is Decaying
- TESS Transit Timing of Hundreds of Hot Jupiters
- Empirical limb-darkening coefficients & transit parameters of known exoplanets from TESS
- WASP-4b Arrived Early for the TESS Mission
- Decaying Orbit of the Hot Jupiter WASP-12b: Confirmation with TESS Observations
- Periastron Precession Measurements in Transiting Extrasolar Planetary Systems at the Level of General Relativity
- WASP-117b: a 10-day-period Saturn in an eccentric and misaligned orbit
- Ephemeris refinement of 21 Hot Jupiter exoplanets with high timing uncertainties