Elliptically polarized high-order harmonic generation of Ar atom in an intense laser field

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Chinese Physics B Pub Date : 2024-04-01 DOI:10.1088/1674-1056/ad2604
Jie Hu, Yi-Chen Wang, Qiu-Shuang Jing, Wei Jiang, Ge-Wen Wang, Yi-Wen Zhao, Bo Xiao, Hong-Jing Liang, Ri Ma
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Abstract

High-order harmonic generation (HHG) of Ar atom in an elliptically polarized intense laser field is experimentally investigated in this work. Interestingly, the anomalous ellipticity dependence on the laser ellipticity (ε) in the lower-order harmonics is observed, specifically in the 13rd-order, which displays a maximal harmonic intensity at ε ≈ 0.1, rather than at ε = 0 as expected. This contradicts the general trend of harmonic yield, which typically decreases with the increase of laser ellipticity. In this study, we attribute this phenomenon to the disruption of the symmetry of the wave function by the Coulomb effect, leading to the generation of a harmonic with high ellipticity. This finding provides valuable insights into the behavior of elliptically polarized harmonics and opens up a potential way for exploring new applications in ultrafast spectroscopy and light–matter interactions.
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强激光场中氩原子的椭圆偏振高阶谐波生成
本研究通过实验研究了椭圆偏振强激光场中氩原子的高阶谐波发生(HHG)。有趣的是,在低阶谐波中观察到了与激光椭圆度(ε)有关的反常椭圆度依赖性,特别是在 13 阶谐波中,在 ε ≈ 0.1 时显示出最大谐波强度,而不是像预期的那样在 ε = 0 时。这与谐波产量的一般趋势相矛盾,谐波产量通常会随着激光椭圆度的增加而降低。在本研究中,我们将这一现象归因于库仑效应破坏了波函数的对称性,导致产生了高椭圆度的谐波。这一发现为椭圆偏振谐波的行为提供了宝贵的见解,并为探索超快光谱学和光物质相互作用的新应用开辟了一条潜在的途径。
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来源期刊
Chinese Physics B
Chinese Physics B 物理-物理:综合
CiteScore
2.80
自引率
23.50%
发文量
15667
审稿时长
2.4 months
期刊介绍: Chinese Physics B is an international journal covering the latest developments and achievements in all branches of physics worldwide (with the exception of nuclear physics and physics of elementary particles and fields, which is covered by Chinese Physics C). It publishes original research papers and rapid communications reflecting creative and innovative achievements across the field of physics, as well as review articles covering important accomplishments in the frontiers of physics. Subject coverage includes: Condensed matter physics and the physics of materials Atomic, molecular and optical physics Statistical, nonlinear and soft matter physics Plasma physics Interdisciplinary physics.
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