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Strong-field assisted extreme-ultraviolet lasing in atoms and molecules

机译:原子和分子的强场辅助极紫外发射

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Using ab-initio simulations, we demonstrate amplification of extreme-ultraviolet (XUV) radiation during transient absorption in a high-harmonic generation type process using the example of the hydrogen atom. The strong IR driving field rapidly depletes the initial ground state while populating excited electronic states through frustrated tunnelling, thereby creating a population inversion. Concomitant XUV lasing is demonstrated by explicit inclusion of the XUV seed in our simulations, allowing a thorough analysis in terms of this transient absorption setup. Possibilities for increasing this gain, e.g. through preexcitation of excited states, change of the atomic gain medium or through multi-center effects in molecules, are demonstrated. Our findings should lead to a reinterpretation of recent experiments.
机译:使用从头算模拟,我们以氢原子为例,演示了在高谐波产生型过程中瞬态吸收过程中极紫外(XUV)辐射的放大。强大的红外驱动场迅速耗尽了初始基态,同时通过受阻的隧穿填充了激发的电子态,从而产生了种群反转。通过在我们的模拟中明确包含XUV种子,可以证明伴随的XUV激光发射,从而可以就此瞬态吸收设置进行全面的分析。增加此增益的可能性,例如通过激发态的预激励,证明了原子增益介质的变化或分子中的多中心效应。我们的发现将导致对最近实验的重新解释。

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