Chen Zhenhao, Su Jie, Zeng Xue, Huang Xuefei, Li Yingbin, Huang Cheng
Opt Express. 2021 Aug 30;29(18):29576-29586. doi: 10.1364/OE.439864.
Electron correlation in nonsequential double ionization (NSDI) of molecules by counter-rotating two-color circularly polarized (TCCP) fields is investigated with a three-dimensional classical ensemble model. Numerical results indicate that the two electrons from NSDI of molecules in counter-rotating TCCP fields show strong angular correlation and the angular correlation behavior sensitively depends on the internuclear distance. With the internuclear distance increasing, the dominant behavior of electron pairs evolves from correlation to anti-correlation. It leaves a clear imprint on the ion momentum distributions, which exhibit an inverted Y-shape distribution at a small internuclear distance and a triangle-shape distribution at a large internuclear distance. Back analysis indicates that the asymmetric electron energy sharing by soft recollision and longer time delay of double ionization are responsible for more anti-correlated emissions at large internuclear distances.
利用三维经典系综模型研究了在反向旋转双色圆偏振(TCCP)场作用下分子非顺序双电离(NSDI)中的电子关联。数值结果表明,在反向旋转TCCP场中分子NSDI产生的两个电子表现出很强的角关联,且角关联行为敏感地依赖于核间距。随着核间距的增加,电子对的主导行为从关联演变为反关联。这在离子动量分布上留下了清晰的印记,在小核间距时呈现倒Y形分布,在大核间距时呈现三角形分布。反向分析表明,软重碰撞导致的不对称电子能量共享和双电离的较长时间延迟是大核间距时更多反关联发射的原因。