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- W1965755768 abstract "Energies of the ground and a number of even- and odd-parity excited states of multi-valence-electron ions have been computed by a computational method in the framework of relativistic multireference many-body perturbation theory. Relativistic multireference perturbation calculations are reported for the ground and over 80 low-lying odd- and even-parity excited states of siliconlike argon $({mathrm{Ar}}^{4+})$ and aluminumlike iron $({mathrm{Fe}}^{13+})$ to demonstrate the unprecedented accuracy of the method. The theory deviates from experiment by less than 0.2% for all but a few excited levels in siliconlike argon. For the more highly ionized aluminumlike iron, the deviations are reduced to within 0.06%. Theoretical magnetic dipole and electric quadrupole transition rates of the lowest-lying ${}^{2}{P}_{3/2}^{o}$ state of aluminumlike Fe and Mn are evaluated, and lifetimes are compared with a recent ion trap experiment." @default.
- W1965755768 created "2016-06-24" @default.
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- W1965755768 date "2003-07-09" @default.
- W1965755768 modified "2023-10-03" @default.
- W1965755768 title "Relativistic multireference many-body perturbation-theory calculations on the multiple openshell states in siliconlike Ar and aluminumlike Fe ions" @default.
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- W1965755768 doi "https://doi.org/10.1103/physreva.68.012503" @default.
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