中国物理B ›› 2024, Vol. 33 ›› Issue (8): 83401-083401.doi: 10.1088/1674-1056/ad5322
所属专题: Featured Column — DATA PAPER
Yadong Liu(刘亚东)1,2, Congcong Jia(贾聪聪)2, Mingxuan Ma(马茗萱)2,3, Xiang Gao(高翔)2, Ling Liu(刘玲)2,†, Yong Wu(吴勇)2,‡, Xiangjun Chen(陈向军)1, and Jianguo Wang(王建国)2
Yadong Liu(刘亚东)1,2, Congcong Jia(贾聪聪)2, Mingxuan Ma(马茗萱)2,3, Xiang Gao(高翔)2, Ling Liu(刘玲)2,†, Yong Wu(吴勇)2,‡, Xiangjun Chen(陈向军)1, and Jianguo Wang(王建国)2
摘要: The semiclassical non-perturbative atomic orbital close-coupling approach has been employed to study the electron capture and excitation processes in He$^{2+}$-H(1s) and He$^{2+}$-H(2s) collision systems. In order to ensure the accuracy of our calculated cross sections, a large number of high excited states and pseudostates are included in the expansion basis sets which are centered on the target and projectile, respectively. The total and partial charge transfer and excitation cross sections are obtained for a wide-energy domain ranging from 1 keV/amu to 200 keV/amu. The present calculations are also compared with the results from other theoretical methods. These cross section data are useful for the investigation of astrophysics and laboratory plasma.
中图分类号: (Electronic excitation and ionization of atoms (including beam-foil excitation and ionization))