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首页> 外文期刊>Physical Review, A >Helicity reversion in high-order-harmonic generation driven by bichromatic counter-rotating circularly polarized laser fields
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Helicity reversion in high-order-harmonic generation driven by bichromatic counter-rotating circularly polarized laser fields

机译:双色反向旋转圆偏振激光场驱动的高次谐波生成中的螺旋度反转

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We investigate the polarization properties of high harmonics generated with the bichromatic counter-rotating circularly polarized (BCCP) laser fields by numerically solving the time-dependent Schrodinger equation (TDSE). It is found that the helicity of the elliptically polarized harmonic emission is reversed at particular harmonic orders. Based on the time-frequency analysis and the classical three-step model, the correspondence between the positions of helicity reversions and the classical trajectories of continuum electrons is established. It is shown that the electrons ionized at one lobe of laser field can be divided into different groups based on the different lobes they recombine at, and the harmonics generated by adjacent groups have opposite helicities. Our study performs a detailed analysis of high harmonics in terms of electron trajectories and depicts a clear and intuitive physical picture of the HHG process in BCCP laser fields.
机译:我们通过数值求解与时间有关的薛定inger方程(TDSE),研究了由双色反向旋转圆偏振(BCCP)激光场产生的高次谐波的偏振特性。发现椭圆偏振谐波发射的螺旋度在特定的谐波阶数下反转。基于时频分析和经典三步模型,建立了螺旋度反转位置与连续电子经典轨迹之间的对应关系。结果表明,在一个激光场上电离的电子可以根据它们重组的不同波瓣分为不同的组,并且相邻组产生的谐波具有相反的螺旋度。我们的研究针对电子轨迹对高谐波进行了详细分析,并描绘了BCCP激光场中HHG过程的清晰直观的物理图景。

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