Cite this article:
Li Xiang-dong, Tan Ming-liang, Yi You-gen, Zhang Zhi-hong, Zhu Zheng-he. FULLY RELATIVISTIC CALCULATIONS OF THE ENERGIES, OSCILLATOR STRENGTHS AND EINSTEIN COEFFICENTS OF THE FORBIDDEN TRANSITIONS FOR Ne-LIKE SEQUENCESJ. Chin. Phys. B, 2000, 9(2): 100-107.
| Li Xiang-dong, Tan Ming-liang, Yi You-gen, Zhang Zhi-hong, Zhu Zheng-he. FULLY RELATIVISTIC CALCULATIONS OF THE ENERGIES, OSCILLATOR STRENGTHS AND EINSTEIN COEFFICENTS OF THE FORBIDDEN TRANSITIONS FOR Ne-LIKE SEQUENCESJ. Chin. Phys. B, 2000, 9(2): 100-107. |
FULLY RELATIVISTIC CALCULATIONS OF THE ENERGIES, OSCILLATOR STRENGTHS AND EINSTEIN COEFFICENTS OF THE FORBIDDEN TRANSITIONS FOR Ne-LIKE SEQUENCES
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Abstract
We provide systematic calculations about the energy levels, Einstein coefficients and oscillator strengths for electric quadrupole (E2) and magnetic quadrupole (M2) transitions between n=3 and n=2 of Ne-like systems by using the fully relativistic multi-configuration Dirac-Fock method. The oscillator strengths of the E2 transitions under Coulomb and Babshkin gauges are compared with each other and show the differences from 1.2 to 12 percent. We also found that the M2 line (0.37429 nm) with the biggest oscillator strengths in Ne-like Ag37+ mixes with the line (2p53/23s1/23d5/2)3/2→gs (0.37427 nm) emitted by the Na-like Ag36+. -
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