Controlling polarization of high-order harmonics generated in the mixed gases with orthogonal two-color laser fields

IF 1.5 4区 物理与天体物理 Q3 OPTICS Journal of Physics B: Atomic, Molecular and Optical Physics Pub Date : 2023-09-02 DOI:10.1088/1361-6455/acf630
Chunyang Zhai, Yinmeng Wu, Xiang Li, Ke Zhang, Shuaijie Kang, Zheng Li, Fengyan Guo, Yingbin Li, Qingbin Tang, Benhai Yu
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Abstract

The generation of highly elliptically polarized high-order harmonics (EPHHs) is indispensable for investigating chirality-sensitive light-matter interactions. Recently, high-order harmonic generation (HHG) with controllable ellipticity and helicity has attracted considerable attention. In this work, we theoretically demonstrate the possibility of generating broadband EPHHs with the same helicity from mixed gases in orthogonal two-color fields. There is a specific relative phase between the HHG from different gas components of the mixture. In addition, manipulation of the phase difference can be achieved by controlling the alignment angle of the molecule in mixed gases. It enables us to selectively enhance one helicity component of the high-order harmonics in a wide spectral range. This scheme paves a way for possibly generating elliptically polarized attosecond pulses.
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正交双色激光场控制混合气体中高次谐波的偏振
高椭圆偏振高次谐波(EPHHs)的产生对于研究手性敏感的光物质相互作用是必不可少的。近年来,椭圆度和螺旋度可控的高次谐波产生引起了人们的广泛关注。在这项工作中,我们从理论上证明了在正交双色场中由混合气体产生具有相同螺旋度的宽带EPHH的可能性。混合物中不同气体组分的HHG之间存在特定的相对相。此外,可以通过控制混合气体中分子的排列角来实现相位差的操纵。它使我们能够在宽光谱范围内选择性地增强高次谐波的一个螺旋度分量。该方案为可能产生椭圆偏振阿秒脉冲铺平了道路。
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来源期刊
CiteScore
3.60
自引率
6.20%
发文量
182
审稿时长
2.8 months
期刊介绍: Published twice-monthly (24 issues per year), Journal of Physics B: Atomic, Molecular and Optical Physics covers the study of atoms, ions, molecules and clusters, and their structure and interactions with particles, photons or fields. The journal also publishes articles dealing with those aspects of spectroscopy, quantum optics and non-linear optics, laser physics, astrophysics, plasma physics, chemical physics, optical cooling and trapping and other investigations where the objects of study are the elementary atomic, ionic or molecular properties of processes.
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