气体中双色高次谐波产生的XUV产率优化

IF 6.5 2区 物理与天体物理 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Nanophotonics Pub Date : 2025-01-15 DOI:10.1515/nanoph-2024-0579
Ann-Kathrin Raab, Melvin Redon, Sylvianne Roscam Abbing, Yuman Fang, Chen Guo, Peter Smorenburg, Johan Mauritsson, Anne-Lise Viotti, Anne L’Huillier, Cord L. Arnold
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引用次数: 0

摘要

利用镱超短脉冲激光及其二次谐波的基本原理,对氩气中双色高次谐波的产生进行了实验研究。在保持总强度不变的情况下,二次谐波的强度及其相对于基波的相位发生变化。我们提取了两种颜色的相对相位和比值的最佳值,从而使极紫外光谱中每个谐波阶的产率都有最大的提高。在三步模型中,最大产率可以与平坦的电子返回时间和返回能量分布相关联。对不同分布的分析可以预测给定谐波阶、总激光强度、基本波长和电离势所需的相对双色相位和比。
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XUV yield optimization of two-color high-order harmonic generation in gases
We perform an experimental two-color high-order harmonic generation study in argon with the fundamental of an ytterbium ultrashort pulse laser and its second harmonic. The intensity of the second harmonic and its phase relative to the fundamental are varied while keeping the total intensity constant. We extract the optimum values for the relative phase and ratio of the two colors which lead to a maximum yield enhancement for each harmonic order in the extreme ultraviolet spectrum. Within the three-step model, the yield maximum can be associated with a flat electron return time versus return energy distribution. An analysis of different distributions allows to predict the required relative two-color phase and ratio for a given harmonic order, total laser intensity, fundamental wavelength, and ionization potential.
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来源期刊
Nanophotonics
Nanophotonics NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
13.50
自引率
6.70%
发文量
358
审稿时长
7 weeks
期刊介绍: Nanophotonics, published in collaboration with Sciencewise, is a prestigious journal that showcases recent international research results, notable advancements in the field, and innovative applications. It is regarded as one of the leading publications in the realm of nanophotonics and encompasses a range of article types including research articles, selectively invited reviews, letters, and perspectives. The journal specifically delves into the study of photon interaction with nano-structures, such as carbon nano-tubes, nano metal particles, nano crystals, semiconductor nano dots, photonic crystals, tissue, and DNA. It offers comprehensive coverage of the most up-to-date discoveries, making it an essential resource for physicists, engineers, and material scientists.
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