Persistent spectral hole burning for R’ color centers in LiF crystals: Statics, dynamics, and external-field effects
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.33.5702/fulltext
Reference46 articles.
1. Low-temperature spectroscopy of organic molecules in solids by photochemical hole burning
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4. Persistent Holes in the Spectra of Localized Vibrational Modes in Crystalline Solids
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1. Zero-phonon lines and electron–phonon interaction characteristics of near-surface layer radiation color centers in lithium fluoride;Journal of Luminescence;2016-04
2. Analysis of the absorption spectra and spectral hole burning in zero-phonon lines of F+3and N1colour centres in LiF crystals;Quantum Electronics;2010-09-10
3. Persistent spectral hole burning studies of F2 color center in lithium fluoride;Journal of Luminescence;2004-05
4. Observation of persistent multiple-holes for 4F3/2(1)–4I9/2 transition of Nd3+ ion doped silicate glass fiber using diode laser;Physics Letters A;1999-11
5. Systematic control of spectral hole burning and homogeneous linewidth by disorder inY2O3:Pr3+crystalline systems;Physical Review B;1999-04-01
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