摘要
本文详细介绍计算电子碰撞激发散射截面的扭曲波玻恩近似(DWBA)理论模型,并对低能DWBA模型进行修正.利用修正的DWBA模型计算了电子碰撞激发氢原子和氦离子1s-2s和1s-2p的散射微分截面.将关于氢原子由基态到n=2态的电子碰撞激发散射微分截面与绝对实验测量数据比较,发现二者符合得很好,这验证了我们对DWBA修正的正确性.本文工作为拟合强场诱导的氦原子非序列双电离关联电子动量谱提供了有效的理论方法.
We present the distorted wave Born approximation (DWBA) for electron impact excitation and a method to calibrate the DWBA. With the calibrated DWBA, the differential cross sections (DCSs) for excitation of H and He ^+ from Is to 2s and 2p are calculated and the results are compared with the absolute experimental measurements for H at incident energies of 50 eV and 100 eV. It has been found that the theoretical results are in very good agreement with experiment, which confirms the validity of the calibration procedure. This work prepares an efficient theoretical method for numerical simulations of non-sequential double ionization of He in strong laser pulse in which laser-induced electron impact excitation of He^+ is involved.
出处
《原子与分子物理学报》
CAS
CSCD
北大核心
2015年第4期603-610,共8页
Journal of Atomic and Molecular Physics
基金
国家自然科学基金(11274219)
广东省高等学校人才引进项目
教育部留学回国人员启动基金项目
汕头大学科研启动经费项目
关键词
电子碰撞激发
散射微分截面
扭曲波玻恩近似
Electron impact excitation
Distorted wave Born approximation
Differential cross sections