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PROGRESS IN LONG SCALE LENGTH LASER-PLASMA INTERACTIONS

机译:长度长度激光等离子体相互作用的进展

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The first experiments on the National Ignition Facility (NIF) have employed the first four beams to measure propagation and laser backscattering losses in large ignition-size plasmas. Gas-filled targets between 2 mm and 7 mm length have been heated from one side by overlapping the focal spots of the four beams from one quad operated at 351 nm (3ω) with a total intensity of 2x10~(15) W cm~(-2). The targets were filled with 1 atm of CO_2 producing of up to 7 mm long homogeneously heated plasmas with densities of n_e = 6 x 10~(20) cm~(-3) and temperatures of T_e = 2 keV. The high energy in a NIF quad of beams of 16kJ, illuminating the target from one direction, creates unique conditions for the study of laser plasma interactions at scale lengths not previously accessible. The propagation through the large-scale plasma was measured with a gated x-ray imager that was filtered for 3.5 keV x rays. These data indicate that the beams interact with the full length of this ignition-scale plasma during the last ~1 ns of the experiment. During that time, the full aperture measurements of the stimulated Brillouin scattering and stimulated Raman scattering show scattering into the four focusing lenses of 3% for the smallest length (~2 mm), increasing to 10-12% for ~7 mm. These results demonstrate the NIF experimental capabilities and further provide a benchmark for three-dimensional modeling of the laser-plasma interactions at ignition-size scale lengths.
机译:关于国家点火设施(NIF)的第一个实验已经采用前四个光束来测量大点火尺寸等离子体中的传播和激光反向散射损失。通过从351nm(3Ω)的一个四边形重叠的四个梁的焦点重叠,通过在351nm(3Ω)中的一个四边形的焦点,从一侧从一侧加热了2mm和7mm长度的气体填充的靶。 -2)。将靶填充有1个ATM的CO_2,产生多达7mm长的均匀加热的等离子体,密度为N_E = 6×10〜(20)cm〜(-3)和T_e = 2kev的温度。从一个方向照射目标的16kj梁的NIF Quad中的高能量为在未预先接近的刻度长度下的激光等离子体相互作用的研究产生了独特的条件。用大规模等离子体的传播用栅极X射线成像仪测量,该X射线成像器被过滤3.5keV X射线。这些数据表明光束在实验的最后〜1 ns期间与该点火级等离子体的全长相互作用。在此期间,刺激的布里渊散射和刺激的拉曼散射的全孔径测量显示到最小长度(〜2mm)的四个聚焦镜片中的散射到3%,增加到〜7mm的10-12%。这些结果证明了NIF实验能力,并进一步提供了点火规模长度的激光等离子体相互作用的三维建模基准。

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