Huang Cheng, Pang Huiling, Huang Xuefei, Zhong Mingmin, Wu Zhengmao
Opt Express. 2020 Mar 30;28(7):10505-10514. doi: 10.1364/OE.390281.
Relative phase effect of nonsequential double ionization (NSDI) of aligned molecules by counter-rotating two-color circularly polarized (TCCP) fields is investigated with a three-dimensional classical ensemble model. Numerical results show that NSDI yield in counter-rotating TCCP fields sensitively depends on the relative phase of the two components, which exhibits a sin-like behavior with the period of π/2. NSDI yield achieves its maximum at the relative phase π/8 and minimum at 3π/8. Back analysis indicates the recollision time and the return angle of the electron strongly depend on the relative phase of the two components, which results in the dominant emission direction of the electrons, is different for different relative phases. This indicates that the recollision process can be steered by changing the relative phase of the two components in counter-rotating TCCP laser fields. Meantime, it provides an avenue to obtain information about the recollision time and the return angle in the recollision process from the electron momentum distribution.
利用三维经典系综模型研究了反向旋转的双色圆偏振(TCCP)场对取向分子非顺序双电离(NSDI)的相对相位效应。数值结果表明,反向旋转TCCP场中的NSDI产率敏感地依赖于两个分量的相对相位,呈现出周期为π/2的类似正弦的行为。NSDI产率在相对相位π/8时达到最大值,在3π/8时达到最小值。反向分析表明,电子的再碰撞时间和返回角度强烈依赖于两个分量的相对相位,这导致不同相对相位下电子的主要发射方向不同。这表明,通过改变反向旋转TCCP激光场中两个分量的相对相位,可以控制再碰撞过程。同时,它为从电子动量分布中获取再碰撞过程中的再碰撞时间和返回角度信息提供了一条途径。