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Wide-Gap Luminescent Materials: Theory and Applications

✍ Scribed by Yehoshua Kalisky (auth.), Stanley R. Rotman (eds.)


Publisher
Springer US
Year
1997
Tongue
English
Leaves
376
Series
Electronic Materials: Science and Technology 2
Edition
1
Category
Library

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✦ Synopsis


Electro-optic devices based on doped wide-band materials are present in industrial uses, in military applications and in everyday life. Whether 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 revolution in optical fiber communications has occurred with the development of erbium-doped fiber amplifiers. Solid-state laser development shifted into high-gear with the theoretical and experimental study of doubly-doped garnet lasers. Recent developments on semiconductor laser arrays are making diodeΒ­ pumped solid-state lasers commercially feasible. The purpose of this book is to detail these developments and to point out that many of the same underlying physical processes control advances in several diverse applications. For example, the basic science of energy transfer will be discussed by Zharikov et al. and Rotman for energy transfer and dopant-defect interactions, respectively; it will also be crucial in understanding cerium-doped scintilla tors, neodymium-chromium lasers, and up-conversion fiber lasers. As another example, phonon-induced non-radiative relaxation will appear in every chapter in this book.

✦ Table of Contents


Front Matter....Pages i-xiv
Hosts for Solid-State Luminescent Systems....Pages 1-11
Luminescent Dopants....Pages 13-137
The Effect of Defects on Inorganic Luminescent Materials....Pages 139-190
Solid State Lasers....Pages 191-234
Inorganic Scintillators....Pages 235-301
Rare Earth-Doped Fiber Lasers and Amplifiers....Pages 303-365
Back Matter....Pages 367-368

✦ Subjects


Characterization and Evaluation of Materials; Electrical Engineering; Optics, Optoelectronics, Plasmonics and Optical Devices


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