arXiv · 1710.11209
$\texttt{PyTranSpot}$ - A tool for multiband light curve modeling of planetary transits and stellar spots
Abstract
Several studies have shown that stellar activity features, such as occulted and non-occulted starspots, can affect the measurement of transit parameters biasing studies of transit timing variations and transmission spectra. We present $\texttt{PyTranSpot}$, which we designed to model multiband transit light curves showing starspot anomalies, inferring both transit and spot parameters. The code follows a pixellation approach to model the star with its corresponding limb darkening, spots, and transiting planet on a two dimensional Cartesian coordinate grid. We combine $\texttt{PyTranSpot}$ with an MCMC framework to study and derive exoplanet transmission spectra, which provides statistically robust values for the physical properties and uncertainties of a transiting star-planet system. We validate $\texttt{PyTranSpot}$'s performance by analyzing eleven synthetic light curves of four different star-planet systems and 20 transit light curves of the well-studied WASP-41b system. We also investigate the impact of starspots on transit parameters and derive wavelength dependent transit depth values for WASP-41b covering a range of 6200-9200 $\AA$, indicating a flat transmission spectrum.
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Ines G. Juvan, M. Lendl, P. E. Cubillos, L. Fossati, J. Tregloan-Reed, H. Lammer, E. W. Guenther, A. Hanslmeier. 2017-10-30. $\texttt{PyTranSpot}$ - A tool for multiband light curve modeling of planetary transits and stellar spots. https://doi.org/10.1051/0004-6361%2F201731345
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