Relativistic Many-body Moller-Plesset Perturbation Theory Calculations of the Energy Levels and Transition Probabilities in Na- to P-like Xe Ions

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Relativistic multireference many-body perturbation theory calculations have been performed on Xe{sup 43+}-Xe{sup 39+} ions, resulting in energy levels, electric dipole transition probabilities, and level lifetimes. The second-order many-body perturbation theory calculation of energy levels included mass shifts, frequency-dependent Breit correction and Lamb shifts. The calculated transition energies and E1 transition rates are used to present synthetic spectra in the extreme ultraviolet range for some of the Xe ions.

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PDF-file: 131 pages; size: 0.7 Mbytes

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Vilkas, M J; Ishikawa, Y & Trabert, E March 27, 2007.

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Relativistic multireference many-body perturbation theory calculations have been performed on Xe{sup 43+}-Xe{sup 39+} ions, resulting in energy levels, electric dipole transition probabilities, and level lifetimes. The second-order many-body perturbation theory calculation of energy levels included mass shifts, frequency-dependent Breit correction and Lamb shifts. The calculated transition energies and E1 transition rates are used to present synthetic spectra in the extreme ultraviolet range for some of the Xe ions.

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PDF-file: 131 pages; size: 0.7 Mbytes

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  • Journal Name: Atomic Data Nuclear Data Tables, vol. 94, no. 5, April 28, 2008, pp. 650-700; Journal Volume: 94; Journal Issue: 5

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  • Report No.: UCRL-JRNL-229590
  • Grant Number: W-7405-ENG-48
  • Office of Scientific & Technical Information Report Number: 940889
  • Archival Resource Key: ark:/67531/metadc894675

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  • March 27, 2007

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  • Sept. 27, 2016, 1:39 a.m.

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  • Dec. 1, 2016, 2:07 p.m.

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Vilkas, M J; Ishikawa, Y & Trabert, E. Relativistic Many-body Moller-Plesset Perturbation Theory Calculations of the Energy Levels and Transition Probabilities in Na- to P-like Xe Ions, article, March 27, 2007; Livermore, California. (digital.library.unt.edu/ark:/67531/metadc894675/: accessed October 21, 2018), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.