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Atomic structure calculations for F-like tungsten

Atomic structure calculations for F-like tungsten
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摘要 Energy levels, wavefunction compositions and lifetimes have been computed for all levels of ls^22s^22p^5, ls^22s^2p^6, ls^22s^22p^43s, ls^22s^22p^43p, and ls^22s^22p^43d configurations in highly charged F-like tungsten ion. The multiconfigurational Dirac-Fock method (MCDF) is adopted to generate the wavefunctions. We have also presented the transition wavelengths, oscillator strengths, transition probabilities, and line strengths for the electric dipole (El) and magnetic quadrupole (M2) transition from the ls^22s^22p^5 ground configuration. We have performed parallel calculations with the flexible atomic code (FAC) for comparing the atomic data. The reliability of present data is assessed by comparison with other theoretical and experimental data available in the literature. Good agreement is found between our results and those obtained using different approaches confirm the quality of our results. Additionally, we have predicted some new atomic data for F-like W that were not available so far and may be important for plasma diagnostic analysis in fusion plasma. Energy levels, wavefunction compositions and lifetimes have been computed for all levels of ls^22s^22p^5, ls^22s^2p^6, ls^22s^22p^43s, ls^22s^22p^43p, and ls^22s^22p^43d configurations in highly charged F-like tungsten ion. The multiconfigurational Dirac-Fock method (MCDF) is adopted to generate the wavefunctions. We have also presented the transition wavelengths, oscillator strengths, transition probabilities, and line strengths for the electric dipole (El) and magnetic quadrupole (M2) transition from the ls^22s^22p^5 ground configuration. We have performed parallel calculations with the flexible atomic code (FAC) for comparing the atomic data. The reliability of present data is assessed by comparison with other theoretical and experimental data available in the literature. Good agreement is found between our results and those obtained using different approaches confirm the quality of our results. Additionally, we have predicted some new atomic data for F-like W that were not available so far and may be important for plasma diagnostic analysis in fusion plasma.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第9期174-179,共6页 中国物理B(英文版)
基金 U.G.C. (India) for fellowship
关键词 atomic data transition probability atomic data, transition probability
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  • 1Zigler A, Zmora H, Spector N, Klapisch M, Schwob J L and Bar-Shalom A 1980 J. Opt. Soc. Am. 70 129.
  • 2Mandelbaum P, Klapisch M, Bar-Shalom A, Schwob J L and Zigler A 1983 Phys. Scr. 27 39.
  • 3Tragin N, Geindre J P, Monier P, Gauthier J C, Chenaispopovics C, Wyart J F and Bauche-Arnoult C 1988 Phys. Scr. 37 72.
  • 4Neu R, Fournier K B, Sch?gl D and Rice J 1997 J. Phys. At. Mol. Opt. Phys. 30 5057.
  • 5Pütterich T, Neu R, Biedermann C, Radtke R and the ASDEX upgrade team 2005 J. Phys. At. Mol. Opt. Phys. 38 307.
  • 6Aggarwal S, Jha A K S and Mohan M 2013 Can. J. Phys. 91 394.
  • 7Mohan M, Aggarwal S and Singh N 2014 Can. J. Phys. 92 1.
  • 8Podpaly Y, Clementson J, Beiersdorfer P, Williamson J, Brown G V and Gu M F 2009 Phys. Rev. A 80 052504.
  • 9Clementson J, Beiersdorfer P, Brown G V, Gu M F, Lundberg H, Podpaly Y and Trabert E 2011 Can. J. Phys. 89 571.
  • 10Feldman U, Seely J F, Landi E and Ralchenko Y 2008 Nucl. Fusion 48 045004.

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