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Predicting convective blueshift and radial-velocity dispersion due to granulation for FGK stars

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arxiv 2307.06986 v2 pith:VCSVUL4W submitted 2023-07-13 astro-ph.SR astro-ph.EP

Predicting convective blueshift and radial-velocity dispersion due to granulation for FGK stars

classification astro-ph.SR astro-ph.EP
keywords granulationstellarblueshiftconvectivestarsdispersionmodelradial-velocity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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To detect Earth-mass planets using the Doppler method, a major obstacle is to differentiate the planetary signal from intrinsic stellar variability (e.g., pulsations, granulation, spots and plages). Convective blueshift, which results from small-scale convection at the surface of Sun-like stars, is relevant for Earth-twin detections as it exhibits Doppler noise on the order of 1 m/s. Here, we present a simple model for convective blueshift based on fundamental equations of stellar structure. Our model successfully matches observations of convective blueshift for FGK stars. Based on our model, we also compute the intrinsic noise floor for stellar granulation in the radial velocity observations. We find that for a given mass range, stars with higher metallicities display lower radial-velocity dispersion due to granulation, in agreement with MHD simulations. We also provide a set of formulae to predict the amplitude of radial-velocity dispersion due to granulation as a function of stellar parameters. Our work is vital in identifying the most amenable stellar targets for EPRV surveys and radial velocity follow-up programmes for TESS, CHEOPS, and the upcoming PLATO mission.

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Cited by 1 Pith paper

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  1. Towards understanding stellar variability at the sub m/s level: granulation-induced variability across the optical spectrum

    astro-ph.SR 2026-08 conditional novelty 6.0

    Using 3D solar simulations, 72 spectral lines show that weak lines have the largest granulation-induced RV variability (up to 40–50 m/s), strong lines vary most in equivalent width, and most lines' RV and width change...