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Eigensolution of Schrödinger Equation for Harmonically Bound Two-Body Coulomb System |
DUAN Yi-wu1,2;SHI Lei2;FENG Mang2;YAN Min2;ZHU Xi-wen2 |
1Department of Physics, Hu’nan Normal University, Changsha 410081
2Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics,
Chinese Academy of Sciences, Wuhan 430071
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Cite this article: |
DUAN Yi-wu, SHI Lei, FENG Mang et al 1998 Chin. Phys. Lett. 15 568-570 |
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Abstract Taking two identical ions in a Paul trap, we solved the SchrÖdinger equation for one-, two-, and three-dimensional harmonically bound two-body Coulomb models, in which the eigenfunctions are written in a series form and the eigenenergies are obtained from a continued fraction. Numerical calculations are made for specific discussion of two- and three-dimensional case. The comparison with a former one-dimensional approximate work shows that our result is more general and accurate.
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Keywords:
32.80.Pj
05.30.Jp
03.75.Fi
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Published: 01 August 1998
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