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Inferring solar differential rotation and viscosity via passive imaging with inertial waves (2403.00488v2)
Published 1 Mar 2024 in astro-ph.SR, cs.NA, math.NA, and math.OC
Abstract: The recent discovery of inertial waves on the surface of the Sun offers new possibilities to learn about the solar interior. These waves are long-lived with a period on the order of the Sun rotation period ($\sim$27 days) and are sensitive to parameters deep inside the Sun. They are excited by turbulent convection, leading to a passive imaging problem. In this work, we present the forward and inverse problem of reconstructing viscosity and differential rotation on the Sun from cross-covariance observations of these inertial waves.
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