Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7840375 | Journal of Luminescence | 2018 | 6 Pages |
Abstract
The 5d-4f luminescence spectra in the LiYF4:Ce3+, LiLuF4:Ce3+ crystals at zero temperature are simulated using a microscopic model of electron-phonon interaction and realistic phonon spectrum of host crystal lattices. Calculations show that three vibrational peaks with the energies 65Â cmâ1, 223Â cmâ1 and 420Â cmâ1 with respect to zero-phonon transition energy dominate in vibrational structure in these spectra. Comparison of simulation results with available experimental data allows to identify zero-phonon lines and vibrational peaks in the measured spectra and thus determine energies of several 4f1 electronic configuration levels: 514, 2221 and 2316Â cmâ1 for LiYF4:Ce3+ and 514, 2188, 2283 and, possibly, 3134Â cmâ1 for LiLuF4:Ce3+ with respect to the ground 4f level energy.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
O.V. Solovyev, M.E. Miftakhova,