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Geometric Aspects of Hf Driven Langmuir Turbulence in the Ionosphere : Volume 10, Issue 1/2 (30/11/-0001)

By Mjølhus, E.

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Book Id: WPLBN0004019531
Format Type: PDF Article :
File Size: Pages 27
Reproduction Date: 2015

Title: Geometric Aspects of Hf Driven Langmuir Turbulence in the Ionosphere : Volume 10, Issue 1/2 (30/11/-0001)  
Author: Mjølhus, E.
Volume: Vol. 10, Issue 1/2
Language: English
Subject: Science, Nonlinear, Processes
Collections: Periodicals: Journal and Magazine Collection (Contemporary), Copernicus GmbH
Publication Date:
Publisher: Copernicus Gmbh, Göttingen, Germany
Member Page: Copernicus Publications


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Helmersen, E., Dubois, D. F., & Mjølhus, E. (-0001). Geometric Aspects of Hf Driven Langmuir Turbulence in the Ionosphere : Volume 10, Issue 1/2 (30/11/-0001). Retrieved from

Description: University of Tromsø, Faculty of Science, Department of Mathematics and Statistics, N-9037 Tromsø, Norway. The geometric aspects of HF-generated Langmuir turbulence in the ionosphere and its detection by radars are theoretically discussed in a broad approach, including local modelling (damped and driven Zakharov system), basic parametric instabilities, polarization and strength of the driving electric field, and radar configurations. Selected examples of numerical results from the local model are presented and discussed in relation to recent experiments, with emphasis on recent experiments at the EISCAT facilities. Anisotropic aspects of the cavitation process in the magnetized plasma are exhibited. Basic processes of cascades and cavitation are by now well identified in these experiments, but a few problems of the detailed agreement between theory and experiments are pointed out.

Geometric aspects of HF driven Langmuir turbulence in the ionosphere


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