株式会社極東書店トップ商品一覧Fundamentals of Nonlinear Optics. 2nd edition

商品詳細

Fundamentals of Nonlinear Optics. 2nd edition

Fundamentals of Nonlinear Optics. 2nd edition

・ISBN 978-0-367-87411-7 paper GB£ 61.99

¥19,638.- (税込) (※)価格はご注文時の参考価格となります。
納品価格につきましては書籍の入荷時点で確定となります。
版元の原価改定、外国為替の変動等により異なる場合がございますので、予めご了承下さい。

お気に入り
電子版あり 大学・学術機関向け電子ブック(eBook)ISBN 9781315116433
著者・編者Powers, Peter E. / Haus, Joseph W.,
出版社 (CRC Press, UK)
出版年月2019
ページ数500 pp.
言語ENG
ニュース番号<A00-60844>

解説

Praise for the 1st Edition:

"well written and up to date.... The problem sets at the end of each chapter reinforce and enhance the material presented, and may give students confidence in handling real-world problems." -Optics & Photonics News

"rigorous but simple description of a difficult field keeps the reader's attention throughout.... serves perfectly for an introductory-level course." -Physics Today

This fully revised introduction enables the reader to understand and use the basic principles related to many phenomena in nonlinear optics and provides the mathematical tools necessary to solve application-relevant problems. The book is a pedagogical guide aimed at a diverse audience including engineers, physicists, and chemists who want a tiered approach to understanding nonlinear optics. The material is augmented by numerous problems, with many requiring the reader to perform real-world calculations for a range of fields, from optical communications to remote sensing and quantum information. Analytical solutions of equations are covered in detail and numerical approaches to solving problems are explained and demonstrated. The second edition expands the earlier treatment and includes:



  • A new chapter on quantum nonlinear optics.


  • Thorough treatment of parametric optical processes covering birefringence, tolerances and beam optimization to design and build high conversion efficiency devices.


  • Treatment of numerical methods to solving sets of complex nonlinear equations.


  • Many problems in each chapter to challenge reader comprehension.


  • Extended treatment of four-wave mixing and solitons.


  • Coverage of ultrafast pulse propagation including walk-off effects.