Fiber Optical Parametric Amplifiers, Oscillators and Related Devices

Nonfiction, Science & Nature, Technology, Electronics, Optoelectronics
Cover of the book Fiber Optical Parametric Amplifiers, Oscillators and Related Devices by Michel E. Marhic, Cambridge University Press
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Michel E. Marhic ISBN: 9781139810524
Publisher: Cambridge University Press Publication: November 15, 2007
Imprint: Cambridge University Press Language: English
Author: Michel E. Marhic
ISBN: 9781139810524
Publisher: Cambridge University Press
Publication: November 15, 2007
Imprint: Cambridge University Press
Language: English

This book, published in 2007, provides comprehensive coverage of the theory and practice of OPAs and related devices, including fiber optical parametric oscillators (OPOs). After introducing the field, the theory and techniques behind all types of fiber OPAs are covered starting from first principles - topics include the scalar and vector OPA theory; the nonlinear Schrodinger equation; OPO theory; and quantum noise figure of fiber OPAs. Challenges of making fiber OPAs practical for a number of applications are discussed, and a survey of the state-of-the-art in feasibility demonstrations and performance evaluations is provided. The capabilities and limitations of OPAs; the potential applications for OPAs and OPOs, and prospects for future developments in the field are discussed. Theoretical tools developed in this text can also be applied to other areas of nonlinear optics. This is a valuable resource for researchers, advanced practitioners, and graduate students in optoelectronics.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book, published in 2007, provides comprehensive coverage of the theory and practice of OPAs and related devices, including fiber optical parametric oscillators (OPOs). After introducing the field, the theory and techniques behind all types of fiber OPAs are covered starting from first principles - topics include the scalar and vector OPA theory; the nonlinear Schrodinger equation; OPO theory; and quantum noise figure of fiber OPAs. Challenges of making fiber OPAs practical for a number of applications are discussed, and a survey of the state-of-the-art in feasibility demonstrations and performance evaluations is provided. The capabilities and limitations of OPAs; the potential applications for OPAs and OPOs, and prospects for future developments in the field are discussed. Theoretical tools developed in this text can also be applied to other areas of nonlinear optics. This is a valuable resource for researchers, advanced practitioners, and graduate students in optoelectronics.

More books from Cambridge University Press

Cover of the book Essential Public Health by Michel E. Marhic
Cover of the book Contesting World Order? by Michel E. Marhic
Cover of the book Reading Class through Shakespeare, Donne, and Milton by Michel E. Marhic
Cover of the book Shakespeare's Workplace by Michel E. Marhic
Cover of the book Language, Syntax, and the Natural Sciences by Michel E. Marhic
Cover of the book The Moral Psychology of Internal Conflict by Michel E. Marhic
Cover of the book A New Era for Mental Health Law and Policy by Michel E. Marhic
Cover of the book The Legacy of Israel in Judah's Bible by Michel E. Marhic
Cover of the book Acute Stroke Care by Michel E. Marhic
Cover of the book Applied Choice Analysis by Michel E. Marhic
Cover of the book Reservoir Geomechanics by Michel E. Marhic
Cover of the book Flanders and the Anglo-Norman World, 1066–1216 by Michel E. Marhic
Cover of the book Analogies in International Investment Law and Arbitration by Michel E. Marhic
Cover of the book The Medieval Presence in Modernist Literature by Michel E. Marhic
Cover of the book The Cambridge Companion to the Literature of the First World War by Michel E. Marhic
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy