Three-dimensional interferometric, spectrometric, and planetary views of Procyon
A. Chiavassa, L. Bigot, P. Kervella, A. Matter, B. Lopez, R. Collet,, Z. Magic, M. Asplund

TL;DR
This study employs advanced 3D radiative-hydrodynamical modeling to analyze Procyon's interferometric and spectroscopic data, revealing detailed stellar surface features, precise measurements of stellar parameters, and implications for exoplanet detection.
Contribution
The paper introduces a new 3D RHD model of Procyon, providing improved stellar parameters, limb-darkening coefficients, and insights into surface granulation effects relevant for exoplanet studies.
Findings
Detected deviations from circular symmetry in visibility curves.
Derived a new angular diameter of 5.390 mas for Procyon.
Confirmed effective temperature of 6591 K and surface gravity log g = 4.01.
Abstract
We used a new realistic 3D radiative-hydrodynamical model atmosphere of Procyon generated with the Stagger Code and synthetic spectra computed with the radiative transfer code Optim3D to re-analyze interferometric and spectroscopic data from the optical to the infrared of Procyon. We compute intensity maps in two optical filters centered at 500 and 800 nm (MARK III) and one infrared filter centered at 2200 nm (VINCI). We constructed stellar disk images accounting for the center-to-limb variations and used them to derive visibility amplitudes and closure phases. We provide 3D limb-darkening coefficients in the optical as well as in the infrared. We show that visibility curves and closure phases show clear deviations from circular symmetry from the 3rd lobe on. These deviations are detectable with current interferometers using closure phases. We derive new angular diameters at different…
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