Journal of Applied Physics · 1995 · 40 citations · 19 references
Materials ScienceSpectroscopic PropertyEngineeringPolarized Optical AbsorptionPhysicsOptical PropertiesSpectroscopyNatural SciencesApplied PhysicsLaser ApplicationsLaser MaterialAbsorption SpectroscopyPhysical ChemistryChemistryCrystallographyNd3+ IonEnergy Levels
A systematic investigation is presented of the polarized optical absorption of the Nd3+ ion in LiNbO3 and LiNbO3(MgO) crystals. Energy levels of Nd3+ are identified and labeled by appropriate crystal quantum numbers μ=1/2 or μ=3/2, in agreement with C3 local symmetry. The anisotropic Judd–Ofelt theory is applied to estimate spectroscopic parameters relevant for laser applications (radiative lifetimes and branching ratios from the 4F3/2 laser state). Fluorescence lifetimes are also determined to estimate the quantum efficiency from the 4F3/2 state: η=0.6 for LiNbO3:Nd and η=0.5 for LiNbO3(MgO):Nd. The effect of MgO codoping in the energy levels as well as in the spectroscopic parameters of the Nd3+ ion is evaluated and discussed.
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Optical Absorption Intensities of Rare-Earth Ions
B. R. Judd · Physical Review · 1962 · 7.9K citations · Full text
Rare Earth Mineral, Optical Absorption Intensities, Nuclear Physics +12
W.F. Krupke, Michelle D. Shinn, John E. Marion et al. · Journal of the Optical Society of America B · 1986 · 376 citations
Materials Science, Thermomechanical Properties, Optical Materials +13