Detection of the tidal deformation of WASP-103b at $3\,\sigma$ with CHEOPS
S. C. C. Barros (1), B. Akinsanm, G. Bou\'e, A. M. S. Smith, J., Laskar, S. Ulmer-Moll, J. Lillo-Box, the CHEOPS team (1 - Instituto de, Astrofisica e Ciencias do Espaco)

TL;DR
This study detects the tidal deformation of exoplanet WASP-103b at 3 sigma using CHEOPS data, providing the first direct measurement of an exoplanet's tidal deformation from transit light curves, and estimates its internal structure.
Contribution
First direct detection of exoplanet tidal deformation from transit light curves and estimation of the planet's fluid Love number using CHEOPS, HST, and Spitzer data.
Findings
Estimated Love number of WASP-103b is 1.59 (+0.45/-0.53).
No significant orbital period variation detected.
Hints of orbital period increase, contrary to expectations.
Abstract
WASP-103b is the exoplanet with the highest expected deformation signature in its transit light curve and one of the shortest expected spiral-in times. Measuring the tidal deformation of the planet would allow us to estimate the second degree fluid Love number and gain insight into the planet's internal structure. Moreover, measuring the tidal decay timescale would allow us to estimate the stellar tidal quality factor, which is key to constraining stellar physics. We obtained 12 transit light curves of WASP-103b with the CHEOPS to estimate the tidal deformation and tidal decay of this extreme system. We modelled the high-precision CHEOPS transit light curves together with systematic instrumental noise using multi-dimensional Gaussian process regression informed by a set of instrumental parameters. To model the tidal deformation, we used a parametrisation model which allowed us to…
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