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Origin of double-line structure in nonsequential double ionization by few-cycle laser pulses

机译:几个循环激光脉冲中的非顺序双电离中双线结构的起源

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摘要

We investigate nonsequential double ionization (NSDI) of molecules by few-cycle laser pulses at the laser intensity of 1.2-1.5 x 10(14) W/cm(2) using the classical ensemble model. The same double-line structure as the lower intensity (1.0 x 10(14) W/cm(2)) is also observed in the correlated electron momentum spectra for 1.2-1.4 x 10(14) W/cm(2). However, in contrast to the lower intensity where NSDI proceeds only through the recollision-induced double excitation with subsequent ionization (RDESI) mechanism, here, the recollision-induced excitation with subsequent ionization (RESI) mechanism has a more significant contribution to NSDI. This indicates that RDESI is not necessary for the formation of the double-line structure and RESI can give rise to the same type of structure independently. Furthermore, we explore the ultrafast dynamics underlying the formation of the double-line structure in RESI. Published by AIP Publishing.
机译:我们使用经典集合模型,通过几个循环的激光脉冲通过几个循环激光脉冲来调查分子的非顺序双电离(NSDI)。 在相关的电子动量光谱中,也观察到与较低强度(1.0×10(14)瓦/厘米)相同的双线结构(1.0×10(14)),用于1.2-1.4×10(14)w / cm(2)。 然而,与NSDI仅通过随后的电离(RDESI)机制仅通过倒闭诱导的双激发进行NSDI进行的较低强度相反,随后的电离(RESI)机制具有更大的对NSDI的恢复诱导的激发。 这表明RDESI不需要形成双线结构,并且RESI可以独立地产生相同类型的结构。 此外,我们探讨了Resi中双线结构形成的超快动态。 通过AIP发布发布。

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