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Photorefractive materials combine photoconductive and electro-optic properties: light affects their electrical conductivity; their optical properties (refractive index, etc.) are affected by applied electric fields. The aim of this book is to cover the vast range of phenomena occurring in Photorefractive Materials. For Physicists it is part of the fashionable subject of Nonlinear Optics. Engineers tend to place it as part of optoelectronics promising a variety of new devices. This book summarizes the results of 28 years of research in a manner that would appeal both to the beginner (a graduate student who has just entered the field) and to the expert (who might have done research on some aspect of the subject for a decade or more). It is in three parts. Part I serves as an introduction with emphasis on physical principles and simple mathematical models. Part II is a comprehensive account of all the major advances. Its main merit is the organization of the material accompanied by a detailed list of references. Part III is concerned with the enormous range of potential applications.
This text investigates the fundamental physical mechanisms and practical engineering applications of photorefractive materials. The authors, A. Grunnet-Jepsen, D. J. Webb, and L. Solymar, synthesize nearly three decades of research to provide a structured framework that bridges the gap between theoretical nonlinear optics and applied optoelectronic device development.
What You Will Find
Scope Limits
Experts recognize this work as a foundational reference that successfully balances introductory physical principles with advanced technical data. Readers frequently note the clarity of the organizational structure, which makes the dense subject matter accessible to both graduate students and seasoned researchers in the field of optics.
Page Count:
504
Publication Date:
1996-01-01
Publisher:
Clarendon Press
ISBN-10:
0191589101
ISBN-13:
9780191589102
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