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Physics and Engineering of Graded-Index Media

Physics and Engineering of Graded-Index Media

Govind P. Agrawal , University of Rochester, New York
August 2023
Available
Hardback
9781009282079
NZD$106.95
inc GST
Hardback
USD
eBook

Optical materials with varying refractive indices are called graded-index (GRIN) media and they are widely used within many industries, including telecommunications and medical imaging. Another recent application is space division multiplexing, an enormously improved technique for optical data transmission. This book synthesises recent research developments in this growing field, presenting both the underlying physical principles behind optical propagation in GRIN media, and the most important engineering applications. The principles of wave optics are employed for solving Maxwell's equations inside a GRIN medium, ensuring that diffractive effects are fully included. The mathematical development builds gradually and a variety of exact and approximate techniques for solving practical problems are included, in addition to coverage of modern topics such as optical vortices, photonic spin-orbit coupling, photonic crystals, and metamaterials. This text will be useful for graduate students and researchers working in optics, photonics and optical communications.

  • Synthesises recent research developments in the growing field of graded-index media
  • Presents both the underlying physical principles behind optical propagation in GRIN media, and the most important engineering applications
  • Mathematically self-contained and accessible to a broad range of readers from physics and engineering

Product details

August 2023
Adobe eBook Reader
9781009282093
0 pages
This ISBN is for an eBook version which is distributed on our behalf by a third party.

Optical materials with varying refractive indices are called graded-index (GRIN) media and they are widely used within many industries, including telecommunications and medical imaging. Another recent application is space division multiplexing, an enormously improved technique for optical data transmission. This book synthesises recent research developments in this growing field, presenting both the underlying physical principles behind optical propagation in GRIN media, and the most important engineering applications. The principles of wave optics are employed for solving Maxwell's equations inside a GRIN medium, ensuring that diffractive effects are fully included. The mathematical development builds gradually and a variety of exact and approximate techniques for solving practical problems are included, in addition to coverage of modern topics such as optical vortices, photonic spin-orbit coupling, photonic crystals, and metamaterials. This text will be useful for graduate students and researchers working in optics, photonics and optical communications.