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Single and double ionization of diatomic molecules in strong laser fields

机译:强激光场中双原子分子的单电离和双电离

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Strong-field single ionization and double ionization of two diatomic molecules, O-2 and N-2, are studied and compared to Xe and Ar, using an intense ultrashort pulse Ti:sapphire laser in the 2x10(13) to 8x10(14) W/cm(2) intensity range. N-2 behaves Like a structureless atom for both single and double ionization. The recently reported suppression of the O-2(+) ion yield compared to Xe+ is confirmed in our experiment, but we show that the suppression is not due to dissociative recombination. Rather, we conclude that the ionization rate of O-2 is below that predicted by tunneling ionization. We extend the study to the double ionization of O-2 and find a distinctly reduced nonsequential double-ionization rate. We find evidence that electronic structure influences strong-field tunneling ionization in molecules. [S1050-2947(98)50512-4]. [References: 20]
机译:研究了两个双原子分子O-2和N-2的强场单电离和双电离,并在2x10(13)至8x10(14)中使用强超短脉冲Ti:蓝宝石激光与Xe和Ar进行了比较W / cm(2)强度范围。对于单电离和双电离,N-2的行为都像无结构原子。在我们的实验中证实了最近报道的与Xe +相比对O-2(+)离子产量的抑制作用,但是我们表明该抑制作用不是由于解离重组引起的。相反,我们得出的结论是O-2的电离速率低于隧穿电离所预测的速率。我们将研究扩展到O-2的双电离,并发现明显降低的非顺序双电离率。我们发现证据表明电子结构影响分子中的强场隧穿电离。 [S1050-2947(98)50512-4]。 [参考:20]

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