A method to deal with the electron impact excitation cross sections of an atom from low to high incident energies are presented. This method combines the partial wave method and the first Born approximation(FBA), i.e., replacing the several lowest partial wave cross sections of the total cross sections within FBA by the corresponding exact partial wave cross sections. A new set of codes are developed to calculate the FBA partial wave cross sections. Using this method,the convergent e–He collision cross sections of optical-forbidden and optical-allowed transitions at low to high incident energies are obtained. The calculation results demonstrate the validity and efficiency of the method.
离化态原子广泛存在于等离子体物质中,其相关性质是天体物理、受控核聚变等前沿科学研究领域的重要基础.基于独立电子近似,本文系统研究了扩展周期表元素(2 Z 119)所有中性和离化态原子的基态电子结构.基于设计的原子轨道竞争图,系统总结了各周期元素轨道竞争的规律,并结合离化态原子的局域自洽势阐明了其轨道竞争(即轨道塌陷)的机制;在此基础上,说明了部分元素性质与轨道竞争的关系.利用本文研究得到的离化态原子基态电子结构,可建立更精密计算相关原子的能级结构、跃迁几率等物理量之基础,从而满足高功率自由电子激光实验分析、原子核质量精密测量等前沿研究的需求.