arXiv · 2007.11851
Obliquity measurement and atmospheric characterization of the WASP-74 planetary system
Abstract
We present new transit observations of the hot Jupiter WASP-74 b ($T_\mathrm{eq} \sim$ 1860 K) using the high-resolution spectrograph HARPS-N and the multi-colour simultaneous imager MuSCAT2. We refine the orbital properties of the planet and its host star, and measure its obliquity for the first time. The measured sky-projected angle between the stellar spin-axis and the planet's orbital axis is compatible with an orbit well-aligned with the equator of the host star ($\lambda = 0.77\pm0.99 \mathrm{deg}$). We are not able to detect any absorption feature of H$\alpha$, or any other atomic spectral features, in its high-resolution transmission spectra due to low S/N at the line cores. Despite previous claims regarding the presence of strong optical absorbers such TiO and VO gases in the atmosphere of WASP-74 b, the new ground-based photometry combined with a reanalysis of previously reported observations from the literature shows a slope in the low-resolution transmission spectrum steeper than expected from Rayleigh scattering alone.
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R. Luque, N. Casasayas-Barris, H. Parviainen, G. Chen, E. Pallé, J. Livingston, V. J. S. Béjar, N. Crouzet, E. Esparza-Borges, A. Fukui, D. Hidalgo, Y. Kawashima, K. Kawauchi, P. Klagyivik, S. Kurita, N. Kusakabe, J. P. de Leon, A. Madrigal-Aguado, P. Montañés-Rodríguez, M. Mori, F. Murgas, N. Narita, T. Nishiumi, G. Nowak, M. Oshagh, M. Sánchez-Benavente, M. Stangret, M. Tamura, Y. Terada, N. Watanabe. 2020-07-23. Obliquity measurement and atmospheric characterization of the WASP-74 planetary system. https://doi.org/10.1051/0004-6361%2F202038703
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