Ceramic Lasers

Ceramic Lasers

Ceramic Lasers

Ceramic Lasers

eBook

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Overview

Until recently, ceramic materials were considered unsuitable for optics due to the numerous scattering sources, such as grain boundaries and residual pores. However, in the 1990s the technology to generate a coherent beam from ceramic materials was developed, and a highly efficient laser oscillation was realized. In the future, the technology derived from the development of the ceramic laser could be used to develop new functional passive and active optics. Co-authored by one of the pioneers of this field, the book describes the fabrication technology and theoretical characterization of ceramic material properties. It describes novel types of solid lasers and other optics using ceramic materials to demonstrate the application of ceramic gain media in the generation of coherent beams and light amplification. This is an invaluable guide for physicists, materials scientists and engineers working on laser ceramics.

Product Details

ISBN-13: 9781107240803
Publisher: Cambridge University Press
Publication date: 05/23/2013
Sold by: Barnes & Noble
Format: eBook
File size: 33 MB
Note: This product may take a few minutes to download.

About the Author

Akio Ikesue is the President of World-Lab. Co., Ltd. He is also an executive scientist at SCHOTT AG, Germany, and an invited professor at ENSCP (École Nationale Supérieure de Chimie de Paris).
Yan Lin Aung is a researcher at World-Lab. Co., Ltd. His research focuses on opto-ceramics.
Voicu Lupei, member of the Romanian Academy, is a Professor at the National Institute for Laser, Plasma and Radiation Physics in Bucharest, Romania. His research interests are in photonic materials, quantum electronics processes in doped laser materials, and applications of solid-state lasers.

Table of Contents

1. Introduction; 2. Solid-state laser processes and active materials; 3. Fabrication techniques for laser materials; 4. Experimental techniques (powder characteristics and synthesis of optical grade ceramics, effects of sintering aids, etc.); 5. Synthesis of the doped polycrystalline cubic sesquioxide ceramics; 6. Synthesis of Re (Nd) heavily doped YAG ceramics; 7. Optical scattering center in polycrystalline ceramics; 8. Advanced technology in ceramic (composite, fiber, single crystal by sintering method, etc.); 9. Current R&D status of ceramic lasers world wide; 10. Conclusions and future in ceramic technology; 11. Mechanical and thermal properties of the laser ceramics; 12. High-resolution optical spectroscopy and emission decay of doped ceramics; 13. Emission processes in doped ceramics; 14. Ceramic photonic materials; 15. Laser emission of ceramic materials; Index.
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