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Nonsequential double ionization with mid-infrared laser fields

机译:中红外激光场的非顺序双电离

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摘要

Using a full-dimensional Monte Carlo classical ensemble method, we present a theoretical study of atomic nonsequential double ionization (NSDI) with mid-infrared laser fields, and compare with results from near-infrared laser fields. Unlike single-electron strong-field processes, double ionization shows complex and unexpected interplays between the returning electron and its parent ion core. As a result of these interplays, NSDI for mid-IR fields is dominated by second-returning electron trajectories, instead of first-returning trajectories for near-IR fields. Some complex NSDI channels commonly happen with near-IR fields, such as the recollision-excitation-with-subsequent-ionization (RESI) channel, are virtually shut down by mid-IR fields. Besides, the final energies of the two electrons can be extremely unequal, leading to novel e-e momentum correlation spectra that can be measured experimentally.
机译:使用全尺寸蒙特卡洛经典集成方法,我们对中红外激光场进行原子非顺序双电离(NSDI)进行了理论研究,并与近红外激光场的结果进行了比较。与单电子强场过程不同,双电离显示出返回电子与其母离子核之间复杂而出乎意料的相互作用。这些相互作用的结果是,中红外场的NSDI由第二次返回的电子轨迹主导,而不是近红外场的第一回轨迹。某些复杂的NSDI通道通常发生在近红外场中,例如随后电离再碰撞激发(RESI)通道实际上被中红外场关闭了。此外,两个电子的最终能量可能极不相等,从而导致可以通过实验测量的新颖e-e动量相关光谱。

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