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Titlebook: Wide-Gap Luminescent Materials: Theory and Applications; Stanley R. Rotman Book 1997 Springer Science+Business Media New York 1997 communi

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Wide-Gap Luminescent Materials: Theory and Applications978-1-4615-4100-4Series ISSN 1386-3290
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Hosts for Solid-State Luminescent Systems,Solid-state luminescent sources are based on luminescent dopants located in wide-bandgap non-luminescent hosts. Often, the particular host chosen can be as important as the dopant used. In this chapter, we briefly review the properties of the hosts which will influence the luminescent properties of our source.
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Bernard Jacquierion of variables . is large and comparable with the sample size .. In this chapter we continue to analyze the normalized spectral functions of empirical covariance matrices in general case when it is difficult to deduce canonical equations. To demonstrate the main ideas and for simplification of cal
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ane tyrosine kinase-type receptor that is homologous with the epidermal growth factor receptor (EGFR) (.,.) The putative ligand for .-B-2 is thought to be gp30; however, its role in this process remains to be elucidated (.) Although EGFR can transform mouse NIH3T3 cells only in the presence of ligan
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Solid State Lasers, the laser performance. It then proceeds to 2 micron lasers, i.e., thulium and holmium doped crystals, emphasizing the various pumping modes such as diode pumping..The last section describes various fluoride laser hosts and their unique properties.
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Luminescent Dopants,conversion of the initial pump excitation to electron excitation, in particular intracenter transitions, interionic interactions, quenching and sensitization of luminescence, and up-conversion processes, will be discussed. The corresponding models and schemes of energy transfer will be given for the cases of isolated ions and a group of particles.
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Rare Earth-Doped Fiber Lasers and Amplifiers,re earth doping on the quality of the final product. We then review the physics of the dopants and the hosts involved which makes these doped fibers so valuable for optical communications. In the last section, the laser performance itself is summarized; new trends for the future are presented.
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1386-3290 her one engages in laser surgery with a neodymium-Y AG laser or one communicates overseas using optical fibers, the development of these materials is both scientifically and commercially of great interest. Much of the most innovative work has been done in the last 15 years in this area. A minor revo
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