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High-order harmonic generation with a strong laser field and an attosecond-pulse train: the Dirac Delta comb and monochromatic limits

机译:具有强激光场和亚秒级脉冲序列的高次谐波生成:狄拉克三角洲梳和单色极限

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摘要

In recent publications, it has been shown that high-order harmonic generation can be manipulated by employing a time-delayed attosecond pulse train superposed to a strong, near-infrared laser field. It is an open question, however, which is the most adequate way to approximate the attosecond pulse train in a semi-analytic framework. Employing the Strong-Field Approximation and saddle-point methods, we make a detailed assessment of the spectra obtained by modeling the attosecond pulse train by either a monochromatic wave or a Dirac-Delta comb. These are the two extreme limits of a real train, which is composed by a finite set of harmonics. Specifically, in the monochromatic limit, we find the downhill and uphill sets of orbits reported in the literature, and analyze their influence on the high-harmonic spectra. We show that, in principle, the downhill trajectories lead to stronger harmonics, and pronounced enhancements in the low-plateau region. These features are analyzed in terms of quantum interference effects between pairs of quantum orbits, and compared to those obtained in the Dirac-Delta limit.
机译:在最近的出版物中,已经表明,可以通过使用叠加在强的近红外激光场上的延时阿秒脉冲序列来操纵高次谐波的产生。但是,这是一个悬而未决的问题,它是在半解析框架中近似阿秒脉冲序列的最适当方法。利用强场近似和鞍点法,我们对通过用单色波或狄拉克-德尔塔梳模拟阿秒脉冲串而获得的光谱进行了详细的评估。这是由有限的一组谐波组成的真实火车的两个极限。具体来说,在单色极限中,我们找到了文献中报道的下坡和上坡轨道,并分析了它们对高谐波谱的影响。我们显示,原则上,下坡轨迹会导致更强的谐波,并在低高原地区产生明显的增强。根据量子轨道对之间的量子干涉效应来分析这些特征,并将其与狄拉克-德尔塔极限中获得的特征进行比较。

著录项

  • 作者

    De Faria, C F M; Salieres, P;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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