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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Formation, stability and dissociation dynamics of N-2(n+) cations (n=1-2) in 3.5 keV e(-)-N-2 collisions studied using the energy resolved electron-ion coincidence technique
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Formation, stability and dissociation dynamics of N-2(n+) cations (n=1-2) in 3.5 keV e(-)-N-2 collisions studied using the energy resolved electron-ion coincidence technique

机译:3.5 keV E( - ) - N-2碰撞中N-2(n +)阳离子(n = 1-2)的形成,稳定性和解离动力学 - 使用能量分辨电子离子符合技术研究

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摘要

Coincidences between energy selected electrons and ions produced in the decay of a core hole ionized (excited) state in a free nitrogen molecule have been measured at three specified energies of emitted electrons to reveal the individual pathways produced in 3.5 keV electron-induced fragmentation processes. From these measurements, it has been possible to show, for the first time, that in addition to the normal Auger decay, the resonant Auger excitation channels also share their appreciable contributions in producing singly charged parent ions in an electron-induced collision system. The correlations between ion fragmentation products and electronic structures with a hole configuration in singly-, doubly- and possibly in triply charged molecular electronic states populated in the electronic decay of the initial core hole have been studied and discussed. KER values obtained from our experiments are found to be consistent with the previous results of photo absorption experiments for fragmentation channel N-2(2+) - N+ + N+; however, N2+ fragment ions are found to arise mainly from the fragmentation channel N-2(2+) - N2+ + N and to possess relatively low kinetic energies in the considered region of binding energies.
机译:在游离氮素分子中的核心空穴中的衰变(激发)状态下产生的能量选择的电子和离子之间的巧合已经在三个发射的电子的三个特定能量下测量,以揭示3.5keV电子诱导的碎裂过程中产生的个体途径。从这些测量中,已经可以首次示出,即,除了正常的螺栓衰减之外,共振螺旋螺旋振动通道还可以共享其在电子诱导的碰撞系统中产生单电荷的父离的可观贡献。已经研究了在填充在初始芯孔的电子衰减的三次充电分子电子状态中的离子碎片产物和具有孔配置的孔配置之间的相关性。发现从我们的实验中获得的Ker值与碎片通道N-2(2+) - &gt的照片吸收实验的先前结果一致。 n + + n +;然而,发现N2 +片段离子主要来自碎裂通道N-2(2+) - & N2 + + N并在被考虑的结合能区域中具有相对较低的动能。

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