Two-plasmon decay instability and 3/2 harmonic generation in inhomogeneous magnetized plasma

S. S. Ghaffari-Oskooei, A. A. Molavi Choobini
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Abstract

Two-plasmon decay instability emerges as the parametric decay of laser beams into two plasma waves which is expected for hohlraum in inertial confinement fusion. The behavior of this instability in magnetized plasma is investigated in the present study where the thermal effects are considered. The study demonstrates that the applying of a dc magnetic field significantly increases the rate at which the instability develops, while the increase of electron temperature has the opposite effect. The generation of 3/2 harmonic, which results from the beating of the incident laser and plasma wave, is also studied in the present study. The intensity of this harmonic, which appears in the spectrum as a sideband derived analytically, indicates that an increase in the dc magnetic field increases the intensity of this sideband.
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非均质磁化等离子体中的双等离子衰减不稳定性和 3/2 谐波生成
双等离子体衰减不稳定性是指激光束参数衰减为两个等离子体波,这是惯性约束聚变中的霍尔效应所预期的。本研究对这种不稳定性在磁化等离子体中的行为进行了研究,并考虑了热效应。研究证明,施加直流磁场会显著提高不稳定性的发展速度,而电前温度的升高则会产生相反的效果。本研究还对入射激光和等离子体波跳动产生的 3/2 谐波进行了研究。该谐波作为边带出现在频谱中,其强度是通过分析得出的。
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