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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Propagation effects in optical-field-induced gas mixture breakdown for recombination x-ray lasers
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Propagation effects in optical-field-induced gas mixture breakdown for recombination x-ray lasers

机译:复合X射线激光在光场引起的气体混合物分解中的传播效应

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摘要

A two-dimensional pulse propagation model which solves the paraxial wave equation in cylindrical geometry, is used to study argon doped with hydrogen targets. The code includes optical-field ionization, refraction and diffraction effects, above-threshold ionization and inverse bremsstrahlung electron heating mechanisms. A range of target and pump laser parameters are examined and a 4 mm long, 12 mu m wide channel may be formed which is suitable for x-ray lasing. A one-dimensional Lagrangian hydrodynamics model is subsequently used as a postprocessor to simulate the recombination phase with both the plasma effects and atomic kinetics included. Calculated gain coefficients above 300 cm(-1) at 232 Angstrom in Na-like Ar are found throughout the channel but with a saturation intensity of the order of 10(7) W cm(-2). [References: 17]
机译:用二维脉冲传播模型求解圆柱几何中的近轴波方程,用于研究掺杂氢靶的氩气。该代码包括光场电离,折射和衍射效应,阈值以上电离和致反电子加热机理。检查了一系列目标和泵浦激光参数,可以形成4毫米长,12微米宽的通道,适用于X射线激光发射。随后将一维拉格朗日流体力学模型用作后处理器,以模拟包括等离子体效应和原子动力学在内的重组相。在整个通道中发现了类似Na的Ar中在232埃处计算出的300 cm(-1)以上的增益系数,但饱和强度约为10(7)W cm(-2)。 [参考:17]

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