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Principles of Optics for Engineers

Principles of Optics for Engineers

Diffraction and Modal Analysis
William S. C. Chang , University of California, San Diego
May 2015
Available
Hardback
9781107074903
£125.00
GBP
Hardback
USD
eBook

Uniting classical and modern photonics approaches by presenting optical analyses as solutions of Maxwell's equations, this unique book enables students and practising engineers to fully understand the similarities and differences between the different methods. The book begins with a thorough discussion of plane wave analysis, which provides a clear understanding of optics without considering boundary condition or device configuration. It then goes on to cover diffraction analysis of many applications, including a rigorous analysis of TEM waves using Maxwell's equations with boundaries. Laser cavity modes and Gaussian beams are presented, modal analysis is covered, and approximation methods are discussed (including the perturbation technique, coupled mode analysis, and super mode analysis). With theory linked to practical examples throughout, it provides a clear understanding of the interplay between plane wave, diffraction and modal analysis, and how the different techniques can be applied to various areas including imaging, signal processing, and optoelectronic devices.

  • Unites classical and modern approaches by presenting optical analyses as solutions of Maxwell's equations
  • Provides a clear understanding of the interplay between plane wave, diffraction and modal analysis, and how the different techniques can be applied in practice
  • Links theory to practice through numerous practical examples from areas such as imaging, spectral analysis, signal processing, and optoelectronic devices

Product details

May 2015
Hardback
9781107074903
240 pages
236 × 185 × 20 mm
0.64kg
61 b/w illus. 1 table
Available

Uniting classical and modern photonics approaches by presenting optical analyses as solutions of Maxwell's equations, this unique book enables students and practising engineers to fully understand the similarities and differences between the different methods. The book begins with a thorough discussion of plane wave analysis, which provides a clear understanding of optics without considering boundary condition or device configuration. It then goes on to cover diffraction analysis of many applications, including a rigorous analysis of TEM waves using Maxwell's equations with boundaries. Laser cavity modes and Gaussian beams are presented, modal analysis is covered, and approximation methods are discussed (including the perturbation technique, coupled mode analysis, and super mode analysis). With theory linked to practical examples throughout, it provides a clear understanding of the interplay between plane wave, diffraction and modal analysis, and how the different techniques can be applied to various areas including imaging, signal processing, and optoelectronic devices.