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Detailed Reference Information |
Lee, M.C., Klien, E.M.C., Burke, W.J., Zhang, A.X., Riddolls, R.J., Kuo, S.P., Sulzer, M.P. and Isham, B. (1999). Augmentation of natural ionospheric plasma turbulence by HF heater waves. Geophysical Research Letters 26: doi: 10.1029/1998GL900266. issn: 0094-8276. |
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HF heating offers a powerful technique for controlled studies of ionospheric plasma turbulence. Heater waves generate large plasma density depletions and sheet-like ionospheric irregularities in the F region, which can give rise to spread F backscatter. Electric fields associated with the induced irregularities can seed plasma instabilities, driven by such environmental causes as density gradients and ambient electric fields, to enhance spread F signatures. Significant reductions in the height-integrated radar backscatter power, measured during the HF heating, indicate the depletion of magnetic flux tubes. Density gradients at the edges of the depletions provide new sources of free energy to augment ionospheric plasma turbulence, enhancing the spread F processes. Furthermore, depleted magnetic flux tubes create and/or alter ionospheric ducts thus affecting radio wave propagation. ¿ 1999 American Geophysical Union |
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Abstract |
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Keywords
Space Plasma Physics, Active perturbation experiments, Ionosphere, Active experiments, Space Plasma Physics, Nonlinear phenomena |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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