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首页> 外文期刊>Surface and Interface Analysis: SIA: An International Journal Devoted to the Development and Application of Techniques for the Analysis of Surfaces, Interfaces and Thin Films >Performance of binary-encounter-Bethe (BEB) theory for electron-impact ionization cross sections of molecules containing heavy elements (Z > 10)
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Performance of binary-encounter-Bethe (BEB) theory for electron-impact ionization cross sections of molecules containing heavy elements (Z > 10)

机译:二元遭遇贝特(BEB)理论对包含重元素(Z> 10)的分子的电子碰撞电离截面的性能

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摘要

The binary-encounter-Bethe (BEB) theory developed by Kim and coworkers has been successful for computing electron-impact ionization cross sections of many molecules. However, some recent publications have stated that BEB theory performs poorly for molecules that contain heavier elements such as chlorine and sulfur. We have found that the BEB calculations in those publications were performed incorrectly. When performed correctly, BEB predictions are as good for heavy-element molecules as for light-element molecules. We recommended recently that an alternative, less-confusing procedure be used for molecules that contain heavier elements. The alternative procedure, based upon effective core potentials (ECPs), does not require explicit kinetic energy corrections. For peak cross sections of a group of 18 molecules, the root-mean-square difference between BEB predictions and experimental values is 13%. Results are presented for CCl3CN, C2Cl6, C2HCl5, C2Cl4, both isomers Of C2H2Cl4, CCl4, TiCl4, CBr4, CHBr3, CH2Br2, GaCl, CS2, H2S, CH3I, Al(CH3)(3), Ga(CH3)(3), and hexamethyldisiloxane. Incorrect BEB calculations have been reported in the literature for several of these molecules. Published in 2005 by John Wiley & Sons, Ltd.
机译:由Kim和他的同事开发的二元遭遇贝特(BEB)理论已经成功地用于计算许多分子的电子碰撞电离截面。但是,最近的一些出版物指出,BEB理论对于包含较重元素(例如氯和硫)的分子的性能较差。我们发现这些出版物中的BEB计算不正确。如果正确执行,则BEB预测对于重元素分子和轻元素分子一样好。最近,我们建议对包含较重元素的分子使用另一种较少混淆的方法。基于有效核心电势(ECP)的替代程序不需要明确的动能校正。对于一组18个分子的峰截面,BEB预测与实验值之间的均方根差为13%。给出了CCl3CN,C2Cl6,C2HCl5,C2Cl4,C2H2Cl4,CCl4,TiCl4,CBr4,CHBr3,CH2Br2,GaCl,CS2,H2S,CH3I,Al(CH3)(3),Ga(CH3)(3)的两种异构体的结果和六甲基二硅氧烷。对于这些分子中的几种,已有文献报道了错误的BEB计算。 John Wiley&Sons,Ltd.在2005年出版。

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