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Electron density and temperature contour plots from a laser-produced plasma using collective ultraviolet Thomson scattering

机译:激光产生等离子体的电子密度和温度等高线图,使用集体紫外汤姆森散射

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Temporally integrated ultraviolet collective Thomson scattering measurements were performed with frequency-quadrupled Nd:YAG laser radiation on an underdense long-scalelength aluminum plasma (n/sub c//spl sim/10/sup 21/ cm/sup -3/, Z/spl ap/7, T/sub e//spl ap/T/sub i//spl ges/50 eV, L/spl ges/100 /spl mu/m). The plasma was preformed by an Nd:YAG fundamental beam (1.06 /spl mu/m) with focusable intensities of 10/sup 11/ W/cm/sup 2/. Color images of two-dimensional (2-D) spatially resolved (30 /spl mu/m) electron density and electron temperature were obtained. These are the shortest wavelength Thomson scattering measurements on a plasma to date.
机译:使用频率四倍的Nd:YAG激光辐射在密度不足的长标度铝等离子体(n / sub c // spl sim / 10 / sup 21 / cm / sup -3 /,Z / spl ap / 7,T / sub e // spl ap / T / sub i // spl ges / 50 eV,L / spl ges / 100 / spl mu / m)。等离子体由Nd:YAG基本光束(1.06 / spl mu / m)形成,聚焦强度为10 / sup 11 / W / cm / sup 2 /。获得了二维(2-D)空间分辨的(30 / spl mu / m)电子密度和电子温度的彩色图像。这是迄今为止对等离子体进行的最短波长的汤姆森散射测量。

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