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Impulsively generated fast coronal pulsationsRapid oscillations in the corona are discussed from a theoretical standpoint, developing some previous work on ducted, fast magnetoacoustic waves in an inhomogeneous medium. In the theory, impulsively (e.g., flare) generated mhd (magnetohydrodynamic) waves are ducted by regions of low Alfven speed (high density) such as coronal loops. Wave propagation in such ducts is strongly dispersive and closely akin to the behavior of Love waves in seismology, Pekeris waves in oceanography and guided waves in fiber optics. Such flare-generated magnetoacoustic waves possess distinctive temporal signatures consisting of periodic, quasi-periodic and decay phases. The quasi-periodic phase possesses the strongest amplitudes and the shortest time scales. Time scales are typically of the order of a second for inhomogeneities (coronal loop width) of 1000 km and Alfven speeds of 1000/kms, and pulse duration times are of tens of seconds. Quasi-periodic signatures have been observed in radio wavelengths for over a decade and more recently by SMM. It is hoped that the theoretical ideas outlined may be successfully related to these observations and thus aid the interpretation of oscillatory signatures recorded by SMM. Such signatures may also provide a diagnostic of coronal conditions. New aspects of the ducted mhd waves, for example their behavior in smoothly varying as opposed to tube-like inhomogeneities, are currently under investigation. The theory is not restricted to loops but applied equally to open field regions.
Document ID
19870012389
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Edwin, P. M.
(Saint Andrew's Univ.)
Roberts, B.
(Saint Andrew's Univ.)
Date Acquired
September 5, 2013
Publication Date
January 1, 1986
Publication Information
Publication: NASA. Goddard Space Flight Center Rapid Fluctuations in Solar Flares
Subject Category
Solar Physics
Accession Number
87N21822
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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