Evidence of Nd:YAG quantum efficiency dependence on nonequivalent crystal field effects
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Reference13 articles.
1. New intermediate gain laser material: Y3(Al1−xGax)5O12 : Nd
2. Energy transfer amongNd3+ions in garnet crystals
3. Radiative transition probabilities within the 4<tex>f</tex><sup>3</sup>ground configuration of Nd:YAG
4. Optical Detection of Site Selectivity for Rare-Earth Ions in Flux-Grown Yttrium Aluminum Garnet
5. Classification and analysis of the impurity ion clusters in Y3AI5O12
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1. Nd:YAG at its 50th anniversary: Still to learn;Journal of Luminescence;2016-01
2. Quantum efficiency measurements in Nd-doped materials;Advanced Solid-State Photonics;2008
3. Energy Transfer Processes in Highly Rare‐Earth–Doped Planar YAG Waveguides;Spectroscopy Letters;2007-03
4. The promise of cryogenic solid-state lasers;IEEE Journal of Selected Topics in Quantum Electronics;2005-05
5. Concentration and Temperature Dependence of Spectroscopic Properties of Highly-Doped Nd:YAG Crystal Grown by Temperature Gradient Technique (TGT);physica status solidi (a);2002-09
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