2007Physical Review AOpen access

QED treatment of electron correlation in Li-like ions

V. A. Yerokhin, A. N. Artemyev, В. М. Шабаев

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Abstract

A systematic QED treatment of the electron correlation is presented for ions along the lithium isoelectronic sequence. We start with the zeroth-order approximation that accounts for a part of the electron-electron interaction by a local model potential introduced into the Dirac equation. The residual electron correlation is treated by perturbation theory. A rigorous QED evaluation is presented for the first two terms of the perturbative expansion; the third-order contribution is calculated within the many-body perturbation theory. We report accurate numerical results for the electronic-structure part of the ionization potential for the $n=2$ states of all Li-like ions up to uranium.

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A systematic QED treatment of the electron correlation is presented for ions along the lithium isoelectronic sequence. We start with the zeroth-order approximation that accounts for a part of the electron-electron interaction by a local model potential introduced into the Dirac equation. The residual electron correlation is treated by perturbation theory. A rigorous QED evaluation is presented for the first two terms of the perturbative expansion; the third-order contribution is calculated within the many-body perturbation theory. We report accurate numerical results for the electronic-structure part of the ionization potential for the $n=2$ states of all Li-like ions up to uranium.

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Available abstract

A systematic QED treatment of the electron correlation is presented for ions along the lithium isoelectronic sequence. We start with the zeroth-order approximation that accounts for a part of the electron-electron interaction by a local model potential introduced into the Dirac equation. The residual electron correlation is treated by perturbation theory. A rigorous QED evaluation is presented for the first two terms of the perturbative expansion; the third-order contribution is calculated within the many-body perturbation theory. We report accurate numerical results for the electronic-structure part of the ionization potential for the $n=2$ states of all Li-like ions up to uranium.

Key concepts: Electronic correlation, Perturbation theory (quantum mechanics), Ion, Electron, Physics, Zeroth law of thermodynamics, Atomic physics, Ionization

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