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Title: Nonlinear scattering from a warm plasma column. Technical report

Technical Report ·
OSTI ID:7304393

When a plane electromagnetic wave impinges normally on a plasma column, with its magnetic field vector parallel to the axis of the column, a series of (Tonks-Dattner) resonances are excited which have been described previously in the linear regime, by a warm plasma analysis using a scalar electron pressure and in inhomogeneous radial electron density profile. In this paper, the theory is extended to the weakly nonlinear regime, assuming a parabolic electron density profile. The nonlinear scattered power is obtained. The excitation of dipole resonances at two different frequencies produces a predominantly quadrupolar radiation pattern with minima in the direction of the incident wave vectors and approximately at right angles to it. In general, there is no nonlinear power radiated in the forward and backward directions. Numerical results for the nonlinear scattering coefficients are obtained in the special case of second harmonic generation at dipole resonance.

Research Organization:
Stanford Univ., CA (USA). Inst. for Plasma Research
DOE Contract Number:
N00014-67-A-0112-0044
OSTI ID:
7304393
Report Number(s):
AD-A-028425; SU-IPR-552
Country of Publication:
United States
Language:
English

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