Physical properties, starspot activity, orbital obliquity, and transmission spectrum of the Qatar-2 planetary system from multi-colour photometry
L. Mancini, J. Southworth, S. Ciceri, J. Tregloan-Reed, I. Crossfield,, N. Nikolov, I. Bruni, R. Zambelli, Th. Henning

TL;DR
This study provides detailed photometric analysis of Qatar-2b, revealing its physical properties, starspot activity, orbital alignment, and transmission spectrum, including potential Rayleigh scattering effects.
Contribution
First high-precision multi-band photometry of Qatar-2b revealing starspot activity, refined system parameters, and transmission spectrum analysis including atmospheric scattering features.
Findings
Larger stellar and planetary radii than previously estimated
Orbital obliquity of approximately 4.3 degrees indicating alignment
Possible Rayleigh scattering detected in the blue wavelength range
Abstract
We present seventeen high-precision light curves of five transits of the planet Qatar-2b, obtained from four defocussed 2m-class telescopes. Three of the transits were observed simultaneously in the SDSS griz passbands using the seven-beam GROND imager on the MPG/ESO 2.2-m telescope. A fourth was observed simultaneously in Gunn grz using the CAHA 2.2-m telescope with BUSCA, and in r using the Cassini 1.52-m telescope. Every light curve shows small anomalies due to the passage of the planetary shadow over a cool spot on the surface of the host star. We fit the light curves with the prism+gemc model to obtain the photometric parameters of the system and the position, size and contrast of each spot. We use these photometric parameters and published spectroscopic measurements to obtain the physical properties of the system to high precision, finding a larger radius and lower density for…
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