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  • Format: ePub

Electromagnetic Waves and Lasers reviews basic electromagnetic wave theory and applies it specifically to lasers to give examples of how the theory is manifested in real life as well as providing practical knowledge about lasers, their operation and usage. It includes detailed information and procedures for setting up a laser optical system making it an excellent guide for those involved with using lasers. As a short treatise on this subject matter, this book aims to offer a quick overview that will allow the reader to gain a competent general understanding of electromagnetic waves and lasers, and how to use lasers in optical systems.…mehr

Produktbeschreibung
Electromagnetic Waves and Lasers reviews basic electromagnetic wave theory and applies it specifically to lasers to give examples of how the theory is manifested in real life as well as providing practical knowledge about lasers, their operation and usage. It includes detailed information and procedures for setting up a laser optical system making it an excellent guide for those involved with using lasers. As a short treatise on this subject matter, this book aims to offer a quick overview that will allow the reader to gain a competent general understanding of electromagnetic waves and lasers, and how to use lasers in optical systems.


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Autorenporträt
Wayne D Kimura received his PhD in electrical engineering from Stanford University in 1981. His first experience working with lasers was in 1975, as an undergraduate, using an argon ion laser to stop bleeding ulcers. He joined STI Optronics, Inc. in 1982 and he is now President of the company. He is also an Affiliate Professor in the Department of Electrical Engineering at the University of Washington-Bothell. Kimura has performed extensive research in the area of lasers and their applications. This has included work on excimer, Nd:YAG, and CO2 lasers; laser-triggered spark-gap switches; glancing incidence mirror measurements; ultrashort-pulse CO2; lasers; laser acceleration of electrons; magnetic field measurements using optical fibers; and advanced accelerator research and development.