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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Elastic and total cross-sections for electron scattering by acetylene in the intermediate energy range
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Elastic and total cross-sections for electron scattering by acetylene in the intermediate energy range

机译:在中能范围内乙炔进行电子散射的弹性横截面和总横截面

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We present a joint theoretical-experimental study on electron scattering by C2H2 in the intermediate energy range. We report calculated elastic differential, integral, and momentum-transfer as well as total (elastic + inelastic) and absorption cross-sections at impact energies ranging from 10 to 500 eV. Also, experimental absolute elastic cross-sections are reported in the (50-500)-eV energy range. A complex optical potential is used to represent the electron-molecule interaction dynamics. The iterative Schwinger variational method, combined with the distorted-wave approximation, is used to solve the scattering equations. Experimentally, the angular distributions of the scattered electrons are converted to absolute cross-sections using the relative flow technique. The comparison of our calculated with our measured results, as well as with other experimental and theoretical data available in the literature, is encouraging.
机译:我们提出了在中间能级范围内由C2H2进行电子散射的联合理论-实验研究。我们报告了在10到500 eV的冲击能量下计算出的弹性微分,积分和动量传递以及总截面(弹性+非弹性)和吸收截面。而且,实验的绝对弹性横截面报告在(50-500)-eV能量范围内。复杂的光势用来表示电子-分子相互作用的动力学。 Schwinger迭代变分方法与失真波逼近相结合,用于求解散射方程。实验上,使用相对流技术将散射电子的角分布转换为绝对横截面。将我们的计算结果与我们的测量结果以及文献中提供的其他实验和理论数据进行比较是令人鼓舞的。

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