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Photodetachment of a Negative Hydrogen Molecular Ion near an Interface
作者姓名:王德华
作者单位:College of Physics and Electronic Engineering, Ludong University, Yantai 264025
基金项目:Supported by the National Natural Science Foundation of China under Grant No 106040457 and the Doctoral Scientific Research Startup Foundation of Ludong University under Grant No 202-23000301.
摘    要:Photodetachment of a negative hydrogen molecular ion near an interface is studied by using the two-centre model and the closed orbit theory. The calculation results show that the photodetachment cross section is related to the distance between the two centres in the H2- and different molecular ion-interface distances. The comparison between the cross section of H2- near an interface with the section of Hˉ shows that at the equilibrium distance of two centres and at low photon energy, the photodetachment cross section of H2- is about twice the cross section of Hˉ, which shows that the interference of the two nuclei is very strong; when the distance between the two centres is large, the section of H2- is almost the same as the cross section of Hˉ near one interface, which indicates that the interference effect of the two centres anishes.

关 键 词:光致分离  氢分子  界面  轨道理论
收稿时间:2006-10-11
修稿时间:2006-10-11

Photodetachment of a Negative Hydrogen Molecular Ion near an Interface
WANG De-Hua.Photodetachment of a Negative Hydrogen Molecular Ion near an Interface[J].Chinese Physics Letters,2007,24(2):400-403.
Authors:WANG De-Hua
Affiliation:College of Physics and Electronic Engineering, Ludong University, Yantai 264025
Abstract:Photodetachment of a negative hydrogen molecular ion near an interface is studied by using the two-centre model and the closed orbit theory. The calculation results show that the photodetachment cross section is related to the distance between the two centres in the H2^- and different molecular ion-interface distances. The comparison between the cross section of H2^- near an interface with the section of H^- shows that at the equilibrium distance of two centres and at low photon energy, the photodetachment cross section of H2^- is about twice the cross section of H^-, which shows that the interference of the two nuclei is very strong; when the distance between the two centres is large, the section of H2^- is almost the same as the cross section of H^- near one interface, which indicates that the interference effect of the two centres vanishes.
Keywords:34  50  Dy  32  80  Gc  03  65  Sq
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