首页> 美国政府科技报告 >Two Plasmon Decay and SRS (Stimulated Raman Scattering) Instabilities in a 0.35 mu M Laser Irradiated Plasmas: Final Technical Report for the Period 6 November 1984-31 July 1986
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Two Plasmon Decay and SRS (Stimulated Raman Scattering) Instabilities in a 0.35 mu M Laser Irradiated Plasmas: Final Technical Report for the Period 6 November 1984-31 July 1986

机译:0.35μm激光辐照等离子体中的两种等离子体衰变和sRs(受激拉曼散射)不稳定性:1984年11月6日至1981年7月31日期间的最终技术报告

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Studies of stimulated Raman back and forward scattering and the generation of high energy electrons at 0.35 micrometer are presented. To isolate the various phenomena occurring at different densities, we attempted to control the plasma density by varying the thickness of the foil targets and also by using foam targets of variable average density. The frequency of the scattered light is used as a diagnostic to measure the plasma density. Time resolved and time integrated spectra for various plasma densities are discussed. Also, the measured energy and angular distribution of the high energy electrons from foil targets are presented. Two-plasmon decay is suggested as the probable mechanism generating the hot electrons. The backscattered light presents a broadband spectrum in the sub-half-harmonic region. This spectrum is limited by a sharp cut-off near 400 nm and by a spectral gap near the half-harmonic region. The half-harmonic spectrum is shown to be split into a red and a blue shifted peak. Effects of the self-generated magnetic fields and plasma temperature on Raman scattering and two-plasmon decay, respectively, are examined as possible mechanisms responsible for the splitting of the half-harmonic spectrum. Finally, a discussion of the effects of the coupling of Raman and Brillouin scattering on the Raman spectrum is presented with emphasis on the quarter critical region. This last mechanism is suggested to contribute to the splitting of the half-harmonic light. (ERA citation 12:010549)

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