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SSGS: Stellar surface magnetic field: Effects on Limb Darkening and Granulation Flicker (Nadiia Kostogryz)

Event Created on 29 Aug 2026 Max Planck Institute for Solar System Research

Magnetic fields shape the surfaces of cool stars, even when the star appears photometrically quiet. In this seminar, I will discuss how small-scale surface magnetism affects two key stellar signals relevant for exoplanet and stellar studies: limb darkening and granulation-driven brightness variability, or flicker. Using 3D radiative magnetohydrodynamic simulations with MURaM, combined with spectral synthesis using MPS-ATLAS, we investigate how magnetic fields modify the center-to-limb intensity variation and the wavelength dependence of flicker. I will show that magnetic flux concentrations can make limb darkening shallower, alter the spectral shape of flicker, and introduce wavelength-dependent stellar signals that may affect transit and transmission-spectroscopy analyses. These results highlight the need to include realistic magnetic stellar atmospheres when interpreting high-precision observations from Kepler, TESS, JWST, and PLATO. Speaker: Nadiia Kostogryz

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