Abstract
Abstract
The mutual interaction of drift wave-type modes and zonal flows causes the formation of higher-order nonlinear structures. This study focuses on the spatio-temporal behavior of these higher-order structures in a linear magnetized plasma. The structures include a solitary vortex, a long-lived circumnavigating motion localized both radially and azimuthally, and a short-lived packet of finer-scale fluctuations excited at the position of the solitary vortex. Observing the time evolution of the two-dimensional cross-sectional structures revealed that the packet of finer-scale fluctuations is trapped in the solitary vortex. The trapping times found are consistent with the theoretical evaluation.
Funder
Japan Society for the Promotion of Science
Collaborative Research Programme of Research Institute for Applied Mechanics, Kyushu University
NIFS Collaboration Research program
the Shimadzu Science Foundation
Asada Science Foundation
Agence Nationale de la Recherche for the project GRANUL
Subject
Condensed Matter Physics,Nuclear Energy and Engineering
Cited by
1 articles.
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