Cite this article:
Ge Zi-Ming, Zhou Ya-Jun, Lü Zhi-Wei, Wang Zhi-Wen. Theoretical calculation of the triple differential cross sections of the 2p orbital of argon in a coplanar highly asymmetric (e, 2e) reactionJ. Chin. Phys. B, 2002, 11(9): 915-918.
| Ge Zi-Ming, Zhou Ya-Jun, Lü Zhi-Wei, Wang Zhi-Wen. Theoretical calculation of the triple differential cross sections of the 2p orbital of argon in a coplanar highly asymmetric (e, 2e) reactionJ. Chin. Phys. B, 2002, 11(9): 915-918. |
Theoretical calculation of the triple differential cross sections of the 2p orbital of argon in a coplanar highly asymmetric (e, 2e) reaction
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Abstract
The triple differential cross sections of the 2p electron of argon in a coplanar highly asymmetric geometry have been calculated with the modified distorted wave Born approximation (DWBA) and the target Hartree-Fock approximation methods. The damping polarization of the semi-classical short-range potentials and the Mee factor are included in the distorting potentials of the modified DWBA. Theoretical results are compared with a recent experiment. The dynamic mechanism of inner shell ionization in a coplanar highly asymmetric geometry (e, 2e) reaction are also discussed. -
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