Calculation of the Zeeman-Fine Energies and the Spectrum with Doppler-Shift Correction of Atomic LithiumReport as inadecuate




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We have calculated the Zeeman-fine energies of atomic Lithium Li by using the varying effective Landé g-factor method. We take the principle quantum number in the range; 2 ≤n ≤10 . For this range we find 26 different energy values and 325 wavelengths some of which are the same. The Doppler shift is found to be Δλ=±0.004λ. The Doppler shift-corrected wavelengths are in perfect agreement with the observed NIST values for atomic Li.

KEYWORDS

Hydrogen-Like Atoms, Effective LandÉ G-Factor, Quantum Entanglement, Zeeman-Fine Energies, Photonic Transitions, Quantum Flux Of Photon

Cite this paper

L. Babsail, L. Bousiakou, S. Alsaleh and M. Saglam -Calculation of the Zeeman-Fine Energies and the Spectrum with Doppler-Shift Correction of Atomic Lithium,- Journal of Modern Physics, Vol. 2 No. 7, 2011, pp. 752-758. doi: 10.4236-jmp.2011.27087.





Author: Laila Babsail, Leda Bousiakou, Salwa Alsaleh, Mesude Saglam

Source: http://www.scirp.org/



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