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XUV and soft X-ray laser radiation from nickel-like lanthanide

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Atomic structure data and effective collision strengths for 1s2 2s2 2p6 3s2 3p6 3d10 and 54 fine-structure levels contained in the configurations 1s2 2s2 2p6 3s2 3p6 3d9 4l (l = s, p, d, f) for the nickel-like La ion have been investigated. These data are used in the determination of the reduced population for the 55 fine structure levels over a wide range of electron densities (from 1020 to 1022) and at various electron plasma temperatures. The gain coefficients for those transitions with positive population inversion factor are determined and plotted against the electron density.
Czasopismo
Rocznik
Strony
971--978
Opis fizyczny
Bibliogr. 15 poz.
Twórcy
autor
  • National Institute of Laser Enhanced Sciences, Cairo University, Giza, Egypt
Bibliografia
  • [1] GOLDSTEIN W.H., OREG J., ZIGLER A., BAR-SHALOM A., KLAPISCH M., Gain predictions for nickel-like gadolinium from a 181-level multiconfigurational distorted-wave collisional-radiative model,Physical Review A 38(4), 1988, pp. 1797–1804.
  • [2] HAGELSTEIN P.L., Relativistic distorted-wave results for nickel-like gadolinium, Physical Review A34(2), 1986, pp. 874–884.
  • [3] HONG LIN ZHANG, SAMPSON D.H., FONTES C.J., Relativistic distorted-wave collision strengths and oscillator strengths for the 33 Ni -like ions with 60 ≤ Z ≤ 92, Atomic Data and Nuclear DataTables 48(1), 1991, pp. 91–163.
  • [4] FOURNIER K.B., Atomic data and spectral line intensities for highly ionized tungsten (Co-like W47+to Rb-like W37+) in a high-temperature, low-density plasma, Atomic Data and Nuclear Data Tables 68(1), 1998, pp. 1–48.
  • [5] FELDMAN U., BHATIA A.K., SUCKEWER S., Short wavelength laser calculations for electron pumping in neon-like krypton (Kr XXVII ), Journal of Applied Physics 54(5), 1983, pp. 2188–2197.
  • [6] FELDMAN U., SEELY J.F., DOSCHEK G.A., BHATIA A.K., 3s–3p laser gain and X-ray line ratios for the carbon isoelectronic sequence, Journal of Applied Physics 59(12), 1986, pp. 3953–3957.
  • [7] FELDMAN U., DOSCHEK G.A., SEELY J.F., BHATIA A.K., Short wavelength laser calculations for electron pumping in Be I and B I isoelectronic sequences (18 ≤ Z ≤ 36), Journal of Applied Physics 58(8), 1985, pp. 2909–2915.
  • [8] FELDMAN U., SEELY J.F., BHATIA A.K., Scaling of ollisionally pumped 3s–3p lasers in the neon isoelectronic sequence, Journal of Applied Physics 56(9), 1984, pp. 2475–2478.
  • [9] CHAPLINE G., WOOD L., X-ray lasers, Physics Today 28(6), 1975, p. 40.
  • [10] VINOGRADOV A.V., SHLYAPTSEV V.N., Calculations of population inversion due to transitions in multiply charged neon-like ions in the 200–2000 Å range, Journal of Quantum Electronics 10, 1980,p. 754.
  • [11] SOBEL’MAN I.I., Introducrion to the Theory of Atomic Spectra, International Series of Monographs in Natural Philosophy, Pergamon Press, Vol. 40, 1979.
  • [12] ZHONG J.Y., ZHAO G., ZAHNG J., Energy levels, transition probabilities, and electron impact excitations for La XXX, Atomic Data and Nuclear Data Tables 92(5), 2006, pp. 481–606.
  • [13] FELDMAN U., SEELY J.F., BHATIA A.K., Density sensitive X-ray line ratios in the Be I, B I, and Ne I isoelectronic sequences, Journal of Applied Physics 58(11), 1985, pp. 3954–3958.
  • [14] ABDELAZIZ W.S., Gain coefficient calculations for short wave laser emission from nickel-like Sm,Physica Scripta 79(4), 2009, p. 045302.
  • [15] ABDELAZIZ W.S., Soft X-ray laser emission from W 46+, The European Physical Journal D – Atomic, Molecular, Optical and Plasma Physics 55(1), 2009, pp. 17–21.
  • [16] ABDELAZIZ W.S., EL SHERBINI TH.M., Reduced population and gain coefficient calculations for soft X-ray laser emission from Eu35+, Optics and Laser Technology 42(5), 2010, pp. 699–702.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0019-0055
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