Abstract
Laser spectroscopy techniques have been applied to Cr3+ -doped YAG and GSGG crystals. Owing to a high resolution dye laser, 2E and 4A2 splittings, zero-phonon 4A2 → 2E. 2T1, 4T2 transitions and vibronic levels of 2E doublets of Cr3+ non-equivalent centers are recorded. Energy transfers between Cr3+ multisites are revealed by site selective spectroscopy and fluorescence decays.
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Nie, W., Monteil, A., Boulon, G. (1991). Laser Spectroscopy Techniques Applied to Cr3+ -Doped Materials. In: Di Bartolo, B. (eds) Advances in Nonradiative Processes in Solids. NATO ASI Series, vol 249. Springer, Boston, MA. https://doi.org/10.1007/978-1-4757-4446-0_14
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DOI: https://doi.org/10.1007/978-1-4757-4446-0_14
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