Constraining the reflective properties of WASP-178b using Cheops photometry
Abstract
Multiwavelength photometry of the secondary eclipses of extrasolar planets is able to disentangle the reflected and thermally emitted light radiated from the planetary dayside. This leads to the measurement of the planetary geometric albedo , which is an indicator of the presence of clouds in the atmosphere, and the recirculation efficiency , which quantifies the energy transport within the atmosphere. In this work we aim to measure and for the planet WASP-178 b, a highly irradiated giant planet with an estimated equilibrium temperature of 2450 K.} We analyzed archival spectra and the light curves collected by Cheops and Tess to characterize the host WASP-178, refine the ephemeris of the system and measure the eclipse depth in the passbands of the two respective telescopes. We measured a marginally significant eclipse depth of 7040 ppm in the Tess passband and statistically significant depth of 7020 ppm in the Cheops passband. Combining the eclipse depth measurement in the Cheops (lambda_eff=6300 AA) and Tess (lambda_eff=8000 AA) passbands we constrained the dayside brightness temperature of WASP-178 b in the 2250-2800 K interval. The geometric albedo 0.1<<0.35 is in general agreement with the picture of poorly reflective giant planets, while the recirculation efficiency 0.7 makes WASP-178 b an interesting laboratory to test the current heat recirculation models.
Cite
@article{arxiv.2309.09037,
title = {Constraining the reflective properties of WASP-178b using Cheops photometry},
author = {I. Pagano and G. Scandariato and V. Singh and M. Lendl and D. Queloz and A. E. Simon and S. G. Sousa and A. Brandeker and A. Collier Cameron and S. Sulis and V. Van Grootel and T. G. Wilson and Y. Alibert and R. Alonso and G. Anglada and T. Bárczy and D. Barrado Navascues and S. C. C. Barros and W. Baumjohann and M. Beck and T. Beck and W. Benz and N. Billot and X. Bonfils and L. Borsato and C. Broeg and G. Bruno and L. Carone and S. Charnoz and C. Corral van Damme and Sz. Csizmadia and P. E. Cubillos and M. B. Davies and M. Deleuil and A. Deline and L. Delrez and O. D. S. Demangeon and B. -O. Demory and D. Ehrenreich and A. Erikson and A. Fortier and L. Fossati and M. Fridlund and D. Gandolfi and M. Gillon and M. Güdel and M. N. Günther and Ch. Helling and S. Hoyer and K. G. Isaak and L. L. Kiss and E. Kopp and K. W. F. Lam and J. Laskar and A. Lecavelier des Etangs and D. Magrin and P. F. L. Maxted and C. Mordasini and M. Munari and V. Nascimbeni and G. Olofsson and R. Ottensamer and E. Pallé and G. Peter and G. Piotto and D. Pollacco and R. Ragazzoni and N. Rando and H. Rauer and C. Reimers and I. Ribas and M. Rieder and N. C. Santos and D. Ségransan and A. M. S. Smith and M. Stalport and M. Steller and Gy. M. Szabó and N. Thomas and S. Udry and J. Venturini and N. A. Walton},
journal= {arXiv preprint arXiv:2309.09037},
year = {2023}
}
Comments
Accepted by Astronomy and Astrophysics on 31/08/2023