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Polarization property of high harmonics generated from nitrogen molecule by bichromatic counter-rotating circularly polarized laser fields

机译:双氮分子由双旋转旋转圆偏振激光磁场产生高谐波的偏振特性

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摘要

The polarization property of high harmonics from N-2 molecule is investigated in a bichromatic counter-rotating circularly polarized laser field by solving the two-dimensional time-dependent Schrodinger equation. The left- and right- circularly polarized harmonics are investigated and the results show that the helicity of the harmonic is reversed at particular harmonic orders. We also show that the electron ionized at one lobe of laser field will recombine with two different N nuclei at the same and the following laser lobes, which results in different polarization properties. The spatial distribution of the harmonic degree of circular polarization are presented to illustrate the effect on polarization properties of the electron recombined with different nuclei. The semi-classical analysis and the time-dependent probability density of electron wave packet arc also demonstrated which provide a clear picture of the electron recombination process.
机译:通过求解二维时间依赖的Schrodinger方程,在双旋转圆偏振激光器中研究了来自N-2分子的高谐波的偏振特性。 研究了左右圆圆偏振的谐波,结果表明,谐波的肝脏升级为特定的谐波令。 我们还表明,在一个激光场的电离电离的电子将在相同和以下激光裂片处用两种不同的N个核重新组合,这导致不同的偏振性。 提出了循环偏振谐波的空间分布,以说明对用不同核重新组合的电子偏振特性的影响。 电子波分组弧的半经典分析和时间依赖性概率密度也证明了电子重组过程的清晰图像。

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