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Long-term Orbital Period Variation of Hot Jupiters from Transiting Time Analysis using TESS Survey Data

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arxiv 2310.17225 v2 pith:U4CNGR7P submitted 2023-10-26 astro-ph.EP

classification astro-ph.EP
keywords orbitalcandidatesjupitersdatalong-termperiodvariationsephemerides
verification ladder T0 review T1 audit T2 compute T3 formal
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Many hot Jupiters may experience orbital decays, which are manifested as long-term transit timing variations. We have analyzed 7068 transits from the Transiting Exoplanet Survey Satellite (TESS) for a sample of 326 hot Jupiters. These new mid-transit time data allow us to update ephemerides for these systems. By combining the new TESS transit timing data with archival data, we search for possible long-term orbital period variations in these hot Jupiters using a linear and a quadratic ephemeris model. We identified 26 candidates that exhibit possible long-term orbital period variations, including 18 candidates with decreasing orbital periods and 8 candidates with increasing orbital periods. Among them, 12 candidates have failed in our leave-one-out cross-validation (LOOCV) test and thus should be considered as marginal candidates. In addition to tidal interaction, alternative mechanisms such as apsidal precession, R{\o}mer effect, and Applegate effect could also contribute to the observed period variations. The ephemerides derived in this work are useful for scheduling follow-up observations for these hot Jupiters in the future. The Python code used to generate the ephemerides is made available online.

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  1. In Search of Decay: An Analysis of Transit Times of Hot Jupiters in Main Sequence and Post-Main Sequence Systems

    astro-ph.EP 2025-08 conditional novelty 5.0 of 10

    A TESS transit-timing survey of 54 hot Jupiter systems finds 8 candidates with orbital decay at three-sigma significance and derives lower limits on the stellar tidal quality factor Q*'.

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