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Two-dimensional spectra of electron collisions with acrylonitrile and methacrylonitrile reveal nuclear dynamics

机译:电子与丙烯腈和甲基丙烯腈碰撞的二维光谱揭示了核动力学

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摘要

Detailed experimental information on the motion of a nuclear packet on a complex (resonant) anion potential surface is obtained by measuring 2-dimensional (2D) electron energy loss spectra. The cross section is plotted as a function of incident electron energy, which determines which resonant anion state is populated, i.e., along which normal coordinate the wave packet is launched, and of the electron energy loss, which reveals into which final states each specific resonant state decays. The 2D spectra are presented for acrylonitrile and methacrylonitrile, at the incident energy range 0.095-1.0 eV, where the incoming electron is temporarily captured in the lowest pi* orbital. The 2D spectra reveal selectivity patterns with respect to which vibrations are excited in the attachment and de-excited in the detachment. Further insight is gained by recording 1D spectra measured along horizontal, vertical, and diagonal cuts of the 2D spectrum. The methyl group in methacrylonitrile increases the resonance width 7 times. This converts the sharp resonances of acrylonitrile into boomerang structures but preserves the essence of the selectivity patterns. Selectivity of vibrational excitation by higher-lying shape resonances up to 8 eV is also reported. (C) 2015 AIP Publishing LLC.
机译:通过测量二维(2D)电子能量损失谱,可以获得有关核包在复杂(共振)阴离子势表面上运动的详细实验信息。根据入射电子能量的函数绘制横截面,以确定入射的共振阴离子状态(即沿着哪个正态坐标发射波包)和电子能量的损失,电子能量损失揭示每个特定的共振进入哪个最终状态状态衰减。给出了丙烯腈和甲基丙烯腈的2D光谱,其入射能量范围为0.095-1.0 eV,其中入射电子被临时捕获在最低pi *轨道中。 2D光谱揭示了选择性模式,在附件中,振动被激发而在分离中被激发。通过记录沿2D光谱的水平,垂直和对角线切割测量的1D光谱,可以进一步了解。甲基丙烯腈中的甲基将共振宽度增加了7倍。这将丙烯腈的尖锐共振转变为飞旋镖结构,但保留了选择性模式的实质。还报道了通过高达8 eV的高阶形状共振产生的振动激励的选择性。 (C)2015 AIP Publishing LLC。

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