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首页> 外文期刊>Physical Review, A >Quantum multiscattering interferences in collision-induced coherent electron emission from diatomic molecules by swift ion impact
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Quantum multiscattering interferences in collision-induced coherent electron emission from diatomic molecules by swift ion impact

机译:SWIFT离子撞击抗抗抗体分子碰撞诱导相干电子发射的量子多刻度干扰

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In the intramolecular scattering process, the interference between the rescattered electron waves emanating from each atomic center gives rise to additional oscillations superimposed on the Young-type oscillatory structure in the observed electron intensity. Here we explore numerically this behavior for coherent electron emission from the dimer Rb-2(+) by fast-moving highly charged ions, which is achieved by solving the two-dimensional time-dependent Schrodinger equation. Well-defined modulations with higher frequency are observed in the momentum distribution of the ejected electron, which are well reproduced by additional quantitative calculations based on the third-order Born series. This demonstrates without ambiguity the dynamic interference induced by multiple scattering paths of the electron prior to emission. Furthermore, the dependence of the phenomenon on the emission direction of the electron and the orientation of the molecular axis also is investigated. The phenomenon is not specific to Rb-2(+) as investigated in the present study, but is broadly applicable to other systems with sufficiently large internuclear distances, thus opening new prospects for the investigation of electron emission process from large systems.
机译:在分子内散射过程中,从每个原子中心发出的压缩电子波之间的干扰导致叠加在观察到的电子强度上的幼型振荡结构上的额外振荡。在这里,我们通过快速移动高度带电离子来探讨来自二聚体RB-2(+)的相干电子发射的这种行为,这是通过求解二维时间依赖的Schrodinger方程来实现的。在喷射电子的动量分布中观察到具有较高频率的明确调制,这通过基于三阶出生系列的额外定量计算良好地再现。这证明了在发射之前通过电子散射路径引起的动态干扰而不模糊。此外,还研究了现象对电子和分子轴取向的发射方向上的依赖性。该现象不具体于本研究中研究的RB-2(+),但广泛适用于具有足够大的核心距离的其他系统,从而开启了从大型系统的电子排放过程调查的新前景。

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