An Estimate of P-Mode Damping by Wave Leakage |
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Authors: | I. De Moortel R. Rosner |
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Affiliation: | (1) School of Mathematics and Statistics, University of St Andrews, North Haugh, St Andrews, KY16 9SS, Scotland;(2) Enrico Fermi Institute, The University of Chicago, Chicago, IL 60637, USA |
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Abstract: | High-cadence TRACE observations show that outward-propagating intensity disturbances are a common feature in large, quiescent coronal loops. Analysis of the frequency distribution of these modes shows peaks at both three- and five-minute periods, indicating that they may be driven by the solar surface oscillations (p modes). The energy flux contained within the coronal intensity disturbances is of the order of (1.1±0.4)×103 ergs cm−2 s−1. A simple order-of-magnitude estimate of the damping rate of the relevant p modes allows us to put an observational constraint on the damping of p modes and shows that leakage into the overlying coronal atmosphere might be able to account for a significant fraction of p-mode damping. |
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Keywords: | MHD: oscillations Corona Activity |
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