Elliptical high-order harmonic generation from current-carrying orbitals of prealigned molecules

IF 1.5 4区 物理与天体物理 Q3 OPTICS
Kaiyi Wang, Yulin Ding, Feng Wang, Xiaofan Zhang, Qing Liao
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引用次数: 0

Abstract

The polarization of high harmonics generated from current-carrying state of nitric oxide molecules irradiated by linear laser fields is investigated by numerically solving the three-dimensional time-dependent Schrödinger equation. It is found that the ellipticity of high harmonics is obviously dependent on the polar angle between the driving laser polarization and molecular axis which is interpreted by the strong field approximation model. Moreover, our results also show that the helicity of near-threshold harmonics is opposite to that of plateau harmonics when the molecule is at any polar angle. To analyze this phenomenon, we simulate the dipole matrix element numerically. Finally, the attosecond pulses with opposite helicities can be obtained by synthesizing near-threshold and plateau harmonics. The ellipticity can be tuned by the alignment angle of molecules. Our work may provide a theoretical guiding and detection tool for the electron dynamics of molecular current-carrying states.
预排列分子载流轨道产生椭圆高次谐波
通过数值求解三维随时间变化的Schrödinger方程,研究了线性激光场辐照一氧化氮分子载流态产生的高次谐波极化。发现高次谐波的椭圆率明显依赖于驱动激光偏振与分子轴之间的极夹角,用强场近似模型解释了这一点。此外,我们的结果还表明,当分子处于任何极角时,近阈次谐波的螺旋度与平台次谐波的螺旋度相反。为了分析这一现象,我们对偶极矩阵元进行了数值模拟。最后,通过近阈值谐波和平台谐波的合成,得到了螺旋度相反的阿秒脉冲。椭圆度可以通过分子的排列角度来调节。本研究为分子载流态的电子动力学研究提供了理论指导和检测工具。
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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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