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Harmonic generation by Gould–Trivelpiece modes propagating into an axial density gradient

Journal Article · · Physics of Fluids (New York)
DOI:https://doi.org/10.1063/1.861098· OSTI ID:4103685
Prior experiments on the propagation of electrostatic waves on a plasma column (Gould--Trivelpiece modes) have shown linear wave reflections from an adjustable axial density gradient which scaled according to the predictions of WKB theory. For finite amplitude incident waves at radian frequency $omega$$<$$omega$/subp//subo/, we have observed strong harmonic production at frequencies n$omega$$<$$omega$/subp//subo/ where n in an integer and $omega$/subp// subo/ is the mean electron plasma frequency in the axially uniform part of the column. The harmonic production appeared to originate in the axially nonuniform plasma, and decreased markedly as the gradient was reduced experimentally. No threshold for harmonic production was observed, thus suggesting that parametric effects were not important. Second-order perturbation theory based on the cold plasma equations is applied to an axially nonuniform plasma in a strong uniform axial magnetic field. The results show that nonlinear source terms enter into the governing differential equation for the second-harmonic potential which are larger than the customary nonlinear terms for an axially uniform column, by a factor as large as ($omega$/subp/R/$omega$L)$sup 4$ where R is the plasma radius and L is the scale length of the inhomogeneity. Enhancement in harmonic production predicted by this model is in quantitative agreement with the experiment. (AIP)
Research Organization:
Department of Engineering and Applied Science, Yale University, New Haven, Connecticut
Sponsoring Organization:
USDOE
NSA Number:
NSA-33-014597
OSTI ID:
4103685
Journal Information:
Physics of Fluids (New York), Journal Name: Physics of Fluids (New York) Journal Issue: 12 Vol. 18; ISSN 0031-9171; ISSN PFLDAS
Publisher:
American Institute of Physics
Country of Publication:
United States
Language:
English

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