Power-2 limb-darkening coefficients for the uvby, UBVRIJHK, SDSS ugriz, Gaia, Kepler, and TESS photometric systems
A. Claret, J. Southworth

TL;DR
This paper computes and provides power-2 limb-darkening coefficients for various photometric systems and space missions, demonstrating their superiority over other two-parameter laws for modeling stellar limb darkening.
Contribution
It offers a comprehensive set of power-2 limb-darkening coefficients derived from stellar atmosphere models for multiple photometric systems and space missions, filling a gap in available data.
Findings
Power-2 law provides better fit than other two-parameter laws.
Coefficients cover a wide range of stellar parameters.
Power-2 law is recommended for two-parameter limb-darkening modeling.
Abstract
Limb darkening is an important stellar phenomenon and must be accounted for in the study of stellar spectra, eclipsing binaries, transiting planetary systems, and microlensing events. The power-2 limb-darkening law provides a good match to the specific intensities predicted by stellar atmosphere models: it is better than other two-parameter laws and is only surpassed by the four-parameter law. Predictions of the limb-darkening coefficients for the power-2 law are not widely available. We therefore compute them, using stellar atmosphere models generated by the ATLAS (plane-parallel) code. Limb-darkening coefficients were computed for the space missions Gaia, Kepler, and TESS as well as for the photometric systems uvby, UBVRIJHK, and SDSS ugriz.The calculations were performed by adopting the Levenberg-Marquardt least-squares minimisation method and were computed with a resolution of 100…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astrophysics and Star Formation Studies
