首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Numerical simulation of the effect of hydrogen on recombination gain in the transition to ground state of Li III
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Numerical simulation of the effect of hydrogen on recombination gain in the transition to ground state of Li III

机译:Li III转变为基态时氢对复合增益影响的数值模拟

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Numerical simulations of recombination gain in the Li III transition to ground state (2 1 at 13.5 nm) are presented. The plasma simulated is a mixture of Li and H ions, and the space-time-dependent gain coefficient is calculated for different mixing ratios and different pumping beam parameters. The numerical model includes the initial optical field ionization of the plasma by an intense 100 fs laser pulse, taking into account residual heating, particle collisions, and spatial effects. Gain is then calculated during the process of recombination as the plasma expands and cools. We show that the addition of hydrogen to the plasma can lead to higher gain with a less restrictive range of experimental parameters. We analyze the effects of the addition of hydrogen on the gain and point to the optimal plasma and pump parameters to produce gain. (c) 2006 Optical Society of America.
机译:提出了Li III过渡到基态(13.5 nm处为2 1)时复合增益的数值模拟。模拟的等离子体是Li和H离子的混合物,并针对不同的混合比和不同的泵浦束参数计算了时空相关的增益系数。该数值模型包括一个100 fs的强激光脉冲引起的等离子体的初始光场电离,其中考虑了残留热量,粒子碰撞和空间效应。然后在重组过程中随着血浆膨胀和冷却计算出增益。我们表明,向等离子体中添加氢可以在实验参数限制范围较小的情况下提高增益。我们分析了添加氢气对增益的影响,并指出了最佳的等离子体和泵浦参数以产生增益。 (c)2006年美国眼镜学会。

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