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Interplay between resonant enhancement and quantum path dynamics in harmonic generation in helium

机译:氦气谐波产生中共振增强和量子路径动力学之间的相互作用

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摘要

We present a theoretical study of the influence of resonant enhancement on quantum path dynamics in the generation of harmonics above and below the ionization threshold in helium. By varying the wavelength and intensity of the driving field from 425 to 500 nm and from 30 to 140 TW/cm(2), respectively, we identify enhancements of harmonics 7, 9, and 11 that correspond to multiphoton resonances between the ground state and the Stark-shifted 1s2p, 1s3p, and 1s4p excited states. A time-frequency analysis of the emission shows that both the short and the long quantum path contributions to the harmonic yield are enhanced through these bound-state resonances. We analyze the subcycle time structure of the ninth harmonic yield in the vicinity of the resonances and find that on resonance the long trajectory contribution is phase shifted by approximately pi/4. Finally, we compare the single atom and the macroscopic response of a helium gas and find that while the subcycle time profiles are slightly distorted by propagation effects, the phase shift of the long-trajectory contribution is still recognizable.
机译:我们提出了一个理论研究,即在氦中电离阈值之上和之下的谐波产生中,共振增强对量子路径动力学的影响。通过分别将驱动场的波长和强度从425改变为500 nm,从30 TW / cm改变为140 TW / cm(2),我们可以确定谐波7、9和11的增强,这对应于基态与光子之间的多光子共振。 Stark位移的1s2p,1s3p和1s4p激发态。发射的时频分析表明,通过这些束缚态共振,短和长量子路径对谐波产量的贡献均得到增强。我们分析了谐振附近的九次谐波屈服的子周期时间结构,发现在谐振时,长的轨迹贡献相移了π/ 4。最后,我们比较了氦气的单个原子和宏观响应,发现尽管子循环时间分布因传播效应而略微失真,但长轨贡献的相移仍然可以识别。

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