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Nonsequential double ionization with mid-infrared laser fields

机译:具有中红外激光场的非顺序双电离

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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:使用全维蒙特卡罗古典集合方法,我们介绍了与中红外激光场的原子非顺序双电离(NSDI)的理论研究,并与近红外激光场的结果进行比较。与单电子强场过程不同,双电离显示返回电子及其母体离子芯之间的复杂和意外相互作用。由于这些相互作用,MID-IR字段的NSDI由第二返回电子轨迹主导,而不是近红外领域的第一返回轨迹。一些复杂的NSDI通道通常发生在接近IR场,例如回复激励与随后的电离(Resi)通道,由中红外场关闭。此外,两个电子的最终能量可能非常不等,导致可以通过实验测量的新型E-E动量相关光谱。

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