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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Selective enhancement of single-order and two-order harmonics from He atom via two-color and three-color laser fields
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Selective enhancement of single-order and two-order harmonics from He atom via two-color and three-color laser fields

机译:通过双色和三色激光田选择地从他原子选择单阶和双阶谐波的增强

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摘要

An effective method to achieve the selective enhancement of single-order and two-order harmonics from He atom has been proposed through laser waveform control of two-color and three-color laser fields. Firstly, with the optimization of omega-2 omega two-color laser waveform, not only the wavelength tunable single-order harmonic (i.e. from 182th order to 328th order) can be enhanced by 17 times compared with the neighbor harmonics, but also the enhancement of two-order harmonics can also be obtained. Theoretical analyses show that the enhancement of the specific harmonics is coming from the folded structure on the short quantum path of the harmonic emission peak. Detail analyses show that the above folded structure happens in the reversed sub-peak region of the half-cycle laser waveform, where the deceleration and further acceleration of the free electron can be found in this structure. Moreover, this structure is dependent on the pulse duration of the controlling pulse. However, it is not very sensitive to the wavelength of the controlling pulse. Further, by properly adding a 3 omega pulse, not only the efficiency of spectral continuum can be enhanced by 300 times compared with that from the two-color field, but also the generation of single-order harmonic with the intensity enhancement of 20 times can be found. Furthermore, the enhancement of the harmonic spectrum can also be achieved when using the 4 omega or 6 omega controlling pulses.
机译:通过两种颜色和三色激光场的激光波形控制,提出了实现从HE原子的选择性提高单阶和两个谐波的有效方法。首先,随着OMEGA-2 OMEGA双色激光波形的优化,与邻居谐波相比,不仅可以通过17次增强波长可调单位谐波(即从182阶至第328阶),而且可以增强也可以获得两阶谐波。理论分析表明,特定谐波的增强来自谐波发射峰的短量子路径上的折叠结构。细节分析表明,上述折叠结构发生在半周期激光波形的反转子峰区域中,其中可以在该结构中找到游离电子的减速和进一步加速。此外,该结构取决于控制脉冲的脉冲持续时间。然而,它对控制脉冲的波长不太敏感。此外,通过适当添加3 omega脉冲,不仅可以通过两种颜色场比较300次可以提高光谱连续体的效率,而且从两种颜色的场比较,也可以产生20倍的强度增强的单位谐波被发现。此外,当使用4 omega或6个Omega控制脉冲时,也可以实现谐波频谱的增强。

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