Project supported by the National Natural Science Foundation of China(Grants Nos.11104017,11025417,11275029,and 11474032);the National Basic Research Programm of China(Grant No.2013CB922200);the Foundation for the Development of Science and Technology of the Chinese Academy of Engineering Physics(Grant Nos.2014B09036 and 2013A0102005)
By solving a time-dependent Schrodinger equation(TDSE), we studied the electron capture process in the He^2++ H collision system under a strong magnetic field in a wide projectile energy range. The strong enhancem...
supported by the National Basic Research Program of China(Grant Nos.2011CB921501 and 2013CB922200);the National Natural Science Foundation of China(Grant Nos.11274035,11275029,11328401,11371218,11474031,11474032,and 11474034);the Foundation of Development of Science and Technology of Chinese Academy of Engineering Physics(Grant Nos.2013A0102005 and 2014A0102005)
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....
Project supported by the National Natural Science Foundation of China(Grant Nos.11179041 and 11275029)
The 3s–np photoionization processes of the ground state 2P1/2 and the metastable state 2P3/2 of Ar5+ are investigated using our recently developed relativistic R-matrix code, where the interactions between the bound...