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Intensity dependence of strong-field double-ionization mechanisms: From field-assisted recollision ionization to recollision-assisted field ionization

机译:强场双电离机制的强度依赖性:从场辅助再碰撞电离到再碰撞辅助场电离

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摘要

Using a three-dimensional quasiclassical technique we explore molecular double ionization by a linearly polarized, infrared (800 nm), and ultrashort (6 fs) laser pulse. We first focus on intensities corresponding to the tunneling regime and identify the main ionization mechanisms in this regime. We devise a selection of observables, such as the correlated momenta and the sum of the momenta parallel to the laser field as a function of the interelectronic angle of escape, where all the main mechanisms have distinct traces. Second, we address intensities above but close to the over-the-barrier intensity regime. We find a surprising anticorrelation of electron momenta similar to the experimental observations reported in Phys. Rev. Lett. 101, 053001 (2008) There, however, the anticorrelation was observed in very low intensities corresponding to the multiphoton regime. We discuss the mechanism responsible for the antiparallel two-electron escape.
机译:使用三维准经典技术,我们通过线偏振,红外(800 nm)和超短(6 fs)激光脉冲探索了分子双电离。我们首先关注与隧穿状态对应的强度,并确定该状态下的主要电离机理。我们设计了一系列可观察的物体,例如相关的矩量和平行于激光场的矩量之和,作为电子间逸出角的函数,所有主要机理都有不同的迹线。第二,我们处理强度高于但接近于屏障强度的强度。我们发现一个令人惊讶的电子动量反相关性,类似于《物理学报》中的实验观察。牧师101,053001(2008)然而,在那里,在与多光子状态相对应的非常低的强度下观察到反相关。我们讨论了引起反平行双电子逸出的机制。

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