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首页> 外文期刊>The Journal of Chemical Physics >Crossed-beam experiment for the scattering of low- and intermediate-energy electrons from BF3: A comparative study with XF3 (X = C, N, and CH) molecules
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Crossed-beam experiment for the scattering of low- and intermediate-energy electrons from BF3: A comparative study with XF3 (X = C, N, and CH) molecules

机译:BF3中低能和中能电子散射的交叉束实验:与XF3(X = C,N和CH)分子的比较研究

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Absolute differential cross sections (DCSs) for electron interaction with BF3 molecules have been measured in the impact energy range of 1.5-200 eV and recorded over a scattering angle range of 15 degrees-150 degrees. These angular distributions have been normalized by reference to the elastic DCSs of the He atom and integrated by employing a modified phase shift analysis procedure to generate integral cross sections (ICSs) and momentum transfer cross sections (MTCSs). The calculations of DCSs and ICSs have been carried out using an independent atom model under the screening corrected additivity rule (IAM-SCAR). The present elastic DCSs have been found to agree well with the results of IAM-SCAR calculation above 20 eV, and also with a recent Schwinger multichannel calculation below 30 eV. Furthermore, in the comparison with the XF3 (X = B, C, N, and CH) molecules, the elastic DCSs reveal a similar angular distribution which are approximately equal in magnitude from 30 to 200 eV. This feature suggests that the elastic scattering is dominated virtually by the 3-outer fluorine atoms surrounding the XF3 molecules. The vibrational DCSs have also been obtained in the energy range of 1.5-15 eV and vibrational analysis based on the angular correlation theory has been carried out to explain the nature of the shape resonances. Limited experiments on vibrational inelastic scattering confirmed the existence of a shape resonance with a peak at 3.8 eV, which is also observed in the vibrational ICS. Finally, the estimated elastic ICSs, MTCSs, as well as total cross sections are compared with the previous cross section data available. (C) 2015 AIP Publishing LLC.
机译:已经在1.5-200 eV的冲击能量范围内测量了与BF3分子进行电子相互作用的绝对微分截面(DCS),并在15度至150度的散射角范围内进行了记录。这些角度分布已通过参考He原子的弹性DCS进行了归一化,并通过使用改进的相移分析程序生成积分截面(ICS)和动量传递截面(MTCS)进行积分。 DCS和ICS的计算已使用独立原子模型在筛选校正加性规则(IAM-SCAR)下进行。已经发现,当前的弹性DCS与高于20 eV的IAM-SCAR计算结果以及最近低于30 eV的Schwinger多通道计算结果非常吻合。此外,在与XF3(X = B,C,N和CH)分子进行比较时,弹性DCS显示出相似的角度分布,其大小从30 eV到200 eV大约相等。该特征表明,弹性散射实际上由围绕XF3分子的3个外部氟原子控制。还已在1.5-15 eV的能量范围内获得了振动DCS,并已进行了基于角度相关理论的振动分析,以解释形状共振的性质。有限的振动非弹性散射实验证实了形状共振的存在,该共振峰在3.8 eV处出现,这在振动ICS中也可以观察到。最后,将估计的弹性ICS,MTCS以及总横截面与之前可用的横截面数据进行比较。 (C)2015 AIP Publishing LLC。

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