Resonance-Induced Enhancement of the High-Order Harmonic Generation in Plasma

R. Ganeev
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引用次数: 19

Abstract

Resonance-induced enhancement of the single harmonic generating in laser-produced plasmas allows achieving the microJoule energies for the coherent pulses in the extreme ultraviolet region using the moderate-intensity lasers. We review various approaches for improving the enhancement of single harmonic, which paves the way for a growth of har- monic yield in the short-wavelength range for various applications. enabled the overlap of these harmonics with the ionic transi- tions with strong oscillator strengths. Another approach for the tuning of harmonic wavelength based on the chirp varia- tions of driving radiation has been reported during gas HHG studies (15-17). Moreover, the tuning of harmonics and their "sharpness" were demonstrated using a combination of the external control of laser chirp and the intensity-induced variation of laser chirp inside a nonlinear medium (16, 17). In this mini-review, we discuss recent studies of the en- hancement of a single harmonic intensity in different parts of plateau in the case of plasma HHG. After brief overview of the experimental details, we analyze the giant single har- monic generation in indium plasma and other plasmas where the harmonic enhancement was reported. We also discuss the conditions of single harmonic enhancement at strong excita- tion of the plasma by femtosecond radiation and using the ultraviolet laser.
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等离子体中高次谐波产生的共振诱导增强
激光等离子体产生的单次谐波共振诱导增强使得使用中等强度激光在极紫外区域实现相干脉冲的微焦耳能量。本文综述了提高单频增强的各种方法,为提高各种应用中短波长的谐波产率铺平了道路。使这些谐波与具有强振子强度的离子跃迁重叠。另一种基于驱动辐射啁啾变化的谐波波长调谐方法在气体HHG研究中得到了报道(15-17)。此外,利用激光啁啾的外部控制和非线性介质中激光啁啾的强度诱导变化相结合,证明了谐波的调谐及其“清晰度”(16,17)。在这篇简短的综述中,我们讨论了在等离子体HHG的情况下,高原不同部位的单次谐波强度增强的最新研究。在简要概述实验细节后,我们分析了铟等离子体和其他报道有谐波增强的等离子体中产生的巨大单谐波。讨论了飞秒辐射和紫外激光对等离子体强激发的单次谐波增强条件。
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