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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Physics of correlated double ionization of atoms in intense laser fields: Quasistatic tunneling limit - art. no. 033404
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Physics of correlated double ionization of atoms in intense laser fields: Quasistatic tunneling limit - art. no. 033404

机译:在强激光场中原子相关双电离的物理学:准静态隧穿极限-艺术。没有。 033404

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We revisit the recollision picture of correlated multiphoton double ionization of atoms in strong laser fields and develop consistent semiclassical model in the tunneling limit. We illustrate the model by applying it to helium and obtain quantitative agreement with recent experiments [B. Walker, E. Mevel, Baorui Yang, P. Breger, J. P. Chambaret, A. Antonetti, L. F. DiMauro, and P. Agostini, Phys. Rev. A 48, R894 (1993); B. Walker, B. Sheehy, L. F. DiMauro, P. Agostini, K. J. Schafer, and K. C. Kulander, Phys. Rev. Lett. 73, 1227 (1994)]. Developing the model, we address several problems of general interest, such as the reduction of intense field-assisted electron-ion collision to the field-free one and the total-cross-sections that include all inelastic channels. We describe a set of important physical effects responsible for the surprisingly high yield of doubly charged ions of noble gas atoms. All effects originate from the key role of the Coulomb potential and its interplay with the laser field. In addition to the Coulomb focusing of the oscillating trajectories onto the parent ion, other effects include transient trapping of electrons after tunneling in the vicinity of the parent ion, the creation of high-velocity electrons at all phases of the laser field, and the dominant role of collisional excitation of the parent ion followed by laser-assisted ionization. [References: 98]
机译:我们重新审视强激光场中原子相关多光子双电离的碰撞图,并在隧穿极限内建立一致的半经典模型。我们通过将其应用于氦气来说明该模型,并获得与最新实验的定量一致性[B. Walker,E。Mevel,Baorui Yang,P。Breger,J。P. Chambaret,A。Antonetti,L。F. DiMauro和P. Agostini,物理学。修订版A 48,R894(1993); B.Walker,B.Sheehy,L.F.DiMauro,P.Agostini,K.J.Schafer和K.C.Kurander(物理)牧师73,1227(1994)]。通过开发该模型,我们解决了一些普遍关注的问题,例如将强场辅助电子离子碰撞减少为无场的碰撞以及包括所有非弹性通道的总横截面。我们描述了一组重要的物理效应,这些惰性效应导致稀有气体原子的双电荷离子出奇的高产率。所有影响都源于库仑电势的关键作用及其与激光场的相互作用。除了将振荡轨迹的库仑聚焦到母离子上以外,其他影响还包括在电子在母离子附近隧穿后的瞬态俘获,在激光场的所有相处产生高速电子以及显性碰撞激发母离子,然后进行激光辅助电离。 [参考:98]

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