General Formalism of the Modified Atomic Orbital Theory for the Rydberg Series of Atoms and Ions: Application to the Photoionization of $Ne^+$

General Formalism of the Modified Atomic Orbital Theory for the Rydberg Series of Atoms and Ions: Application to the Photoionization of $Ne^+$

Year:    2014

Journal of Atomic and Molecular Sciences, Vol. 5 (2014), Iss. 3 : pp. 206–216

Abstract

The general formalism of the Modified orbital atomic theory (MAOT) for the Rydberg series of atoms and ions is presented. Energy resonances of the $2s^22p^4(^1D_2)ns,$ $nd,$ $2s^22p^4(^1S_0)ns,$ $nd$ and $2s^2p^5(^3P_2)np$ Rydberg series originating from the $2s^22p^{5}$ $^2P_{1/2}$ metastable and from the $2s^22p^{5}$ $^2P_{3/2}$ ground state of $Ne^+$ are tabulate applying the MAOT formalism. Analysis of the present results is achieved in the framework of the standard quantum defect expansion formula. Comparison is done with the existing experimental and theoretical data.

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Journal Article Details

Publisher Name:    Global Science Press

Language:    English

DOI:    https://doi.org/10.4208/jams.110813.021414a

Journal of Atomic and Molecular Sciences, Vol. 5 (2014), Iss. 3 : pp. 206–216

Published online:    2014-01

AMS Subject Headings:    Global Science Press

Copyright:    COPYRIGHT: © Global Science Press

Pages:    11

Keywords:    Schrödinger equation hydrogen atom magnetic field finite volume method eigenvalues eigenvectors. Modified atomic orbital theory (MAOT) Electron correlation calculations for atoms and ions Rydberg series.

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