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Effects of Laser Plasma Formation on Quasi-Phase Matching of High-Order Harmonics from Nanoparticles and Atoms

机译:激光等离子体形成对纳米粒子和原子高次谐波的准相位匹配的影响

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摘要

The application of nanoparticles (NPs) and quasi-phase matching (QPM) each play an important role in the enhancement of high-order harmonics (HHG) of ultrashort laser pulses. We analyze various regimes of nanoparticle plasma formation for the creation conditions for maximal QPM-induced enhancement of the groups of harmonics in the extreme ultraviolet (XUV). Laser plasmas were formed on the surfaces of NPs- and microparticle (MPs)-contained targets using ablation by nanosecond, picosecond, and femtosecond pulses. Different conditions of laser plasma formation (extended and perforated plasma) and variable concentrations of free electrons in these three cases of laser ablation led to modifications of QPM conditions. We demonstrate novel approaches in the optimization of QPM at the conditions of laser ablation of NPs and MPs by pulses of different durations. The formation of QPM conditions using femtosecond and picosecond heating pulses during HHG in such plasmas allowed the growth of conversion efficiency of the groups of harmonics, with the enhancement factors exceeding 25× in different ranges of XUV, contrary to less efficient QPM in the case of nanosecond pulse-induced ablation.
机译:纳米粒子(NPs)和准相位匹配(QPM)的应用在增强超短激光脉冲的高次谐波(HHG)中均起着重要作用。我们分析了纳米粒子等离子体形成的各种制度,为最大QPM诱导的极端紫外线(XUV)谐波群的增强创造了条件。使用纳秒,皮秒和飞秒脉冲消融,在包含NPs和微粒(MPs)的目标表面上形成激光等离子体。在这三种激光烧蚀情况下,不同的激光等离子体形成条件(扩展等离子体和穿孔等离子体)和可变浓度的自由电子导致QPM条件的改变。我们展示了在NPs和MPs激光烧蚀不同持续时间的脉冲条件下优化QPM的新颖方法。在此类等离子体中,在HHG中使用飞秒和皮秒加热脉冲形成QPM条件,使得谐波组的转换效率得以提高,而在XUV的不同范围内,增强因子超过25倍,而QPM效率较低纳秒级脉冲诱发的消融。

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