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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >A computational investigation of the neon-like germanium collisionally-pumped laser considering the effect of prepulses
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A computational investigation of the neon-like germanium collisionally-pumped laser considering the effect of prepulses

机译:考虑预脉冲效应的类氖锗碰撞泵浦激光器的计算研究

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Simulations of collisionally-pumped germanium slab targets irradiated with prepulses which precede the main pulse by 5 ns are presented. Preforming the plasma is shown to result in increased absorption of the main pulse and lead to larger useful plasma mass, creating more favorable conditions for gain. The electron density gradients within the plasma are found to be reduced for prepulse levels above /spl sim/5%. Ray tracing calculations show a large enhancement of the J=0-1, 196 /spl Aring/ transition relative to the J=2-1, 236 /spl Aring/ line. The reasons why the J=0-1 transition is affected more than the J=2-1 are considered. The calculations indicate an optimum prepulse level for both lines in the region of 5-10% of the main pulse, but all prepulse levels which have been ray traced show a significant enhancement over the single-pulse calculation.
机译:给出了在主脉冲之前5 ns的预脉冲照射下的碰撞泵浦锗平板靶的仿真结果。显示出预形成等离子体导致增加主脉冲的吸收并导致更大的有用等离子体质量,从而为增益创造了更有利的条件。发现对于/ spl sim / 5%以上的预脉冲水平,等离子体内的电子密度梯度减小。光线跟踪计算显示相对于J = 2-1、236 / spl Aring /线,J = 0-1,196 / spl Aring /线有很大的增强。考虑到J = 0-1过渡比J = 2-1影响更大的原因。计算结果表明两条线的最佳预脉冲水平都在主脉冲的5-10%范围内,但是所有经过射线追踪的预脉冲水平都比单脉冲计算有了显着提高。

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