A regularisation technique to precisely infer limb darkening using transit measurements: can we estimate stellar surface magnetic fields?
Kuldeep Verma, Pierre F. L. Maxted, Anjali Singh, H.-G. Ludwig,, Yashwardhan Sable

TL;DR
This paper introduces a regularisation technique for precise stellar limb darkening inference from transit data, enabling estimation of stellar magnetic fields by reducing model degeneracies and improving accuracy.
Contribution
A novel second derivative regularisation method applied to complex limb darkening models enhances inference precision and accuracy, facilitating magnetic field estimation from transit light curves.
Findings
Regularisation reduces degeneracy among limb darkening parameters.
The method achieves up to twice the precision of previous measurements.
Magnetic fields >200 G are confirmed for specific stars.
Abstract
The high-precision measurements of exoplanet transit light curves that are now available contain information about the planet properties, their orbital parameters, and stellar limb darkening (LD). Recent 3D magneto-hydrodynamical (MHD) simulations of stellar atmospheres have shown that LD depends on the photospheric magnetic field, and hence its precise determination can be used to estimate the field strength. Among existing LD laws, the uses of the simplest ones may lead to biased inferences, whereas the uses of complex laws typically lead to a large degeneracy among the LD parameters. We have developed a novel approach in which we use a complex LD model but with second derivative regularisation during the fitting process. Regularisation controls the complexity of the model appropriately and reduces the degeneracy among LD parameters, thus resulting in precise inferences. The tests on…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomical Observations and Instrumentation · Astronomy and Astrophysical Research
