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首页> 外文期刊>The Journal of Chemical Physics >Intermediate energy cross sections for electron-impact vibrational-excitation of pyrimidine
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Intermediate energy cross sections for electron-impact vibrational-excitation of pyrimidine

机译:电子冲击振动激发嘧啶的中能截面

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摘要

We report differential cross sections (DCSs) and integral cross sections (ICSs) for electron-impact vibrational-excitation of pyrimidine, at incident electron energies in the range 15-50 eV. The scattered electron angular range for the DCS measurements was 15 degrees-90 degrees. The measurements at the DCS-level are the first to be reported for vibrational-excitation in pyrimidine via electron impact, while for the ICS we extend the results from the only previous condensed-phase study [P. L. Levesque, M. Michaud, and L. Sanche, J. Chem. Phys. 122, 094701 (2005)], for electron energies <= 12 eV, to higher energies. Interestingly, the trend in the magnitude of the lower energy condensed-phase ICSs is much smaller when compared to the corresponding gas phase results. As there is no evidence for the existence of any shape-resonances, in the available pyrimidine total cross sections [Back et al., Phys. Rev. A 88, 032702 (2013); Fuss et al., ibid. 88, 042702 (2013)], between 10 and 20 eV, this mismatch in absolute magnitude between the condensed-phase and gas-phase ICSs might be indicative for collective-behaviour effects in the condensed-phase results. (C) 2015 AIP Publishing LLC.
机译:我们报道了在15-50 eV范围内的入射电子能量下,嘧啶的电子碰撞振动激励的微分截面(DCSs)和积分截面(ICSs)。 DCS测量的散射电子角度范围为15度至90度。在DCS级别的测量是第一个通过电子撞击在嘧啶中进行振动激发的报道,而对于ICS,我们扩展了以前唯一的凝结相研究的结果[P. L.Levesque,M.Michaud和L.Sanche,J.Chem。物理122,094701(2005)],将电子能量<= 12 eV转换为更高的能量。有趣的是,与相应的气相结果相比,低能冷凝相ICS的幅度趋势要小得多。由于没有证据表明存在任何形状共振,因此在可用的嘧啶总截面中[Back等,Phys。 A 88,032702(2013); Fuss等,同上。 88,042702(2013)],介于10到20 eV之间,冷凝相和气相ICS之间绝对值的这种不匹配可能表明冷凝相结果中的集体行为效应。 (C)2015 AIP Publishing LLC。

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