Description

Book Synopsis
Three experts in the field of thin-film optics present a detailed and self-contained theoretical study of planar multilayers and how they can be effectively exploited in both traditional and modern applications. Starting with a discussion of the relevant electromagnetic optics, the fundamental optical properties of multilayers are introduced using an electromagnetic approach based on a direct solving of Maxwell''s equations by Fourier transforms. This powerful approach is illustrated through the comprehensive description of two of the most important phenomena in multilayers, i.e. giant field enhancement in dielectric stacks and light scattering from thin-film optical filters. The same approach is extended to the description of the operation of planar microcavities and the balance of energy between radiated and trapped light. This book will be valuable to researchers, engineers and graduate students with interests in nanophotonics, optical telecommunications, observational astronomy and

Trade Review
'… clear and well-written explanations, and very enlightening discussions of TFC-from multilayer stacks to planar microcavities … it makes for rewarding reading, and I recommend it to all students of TFCs.' Christian Brosseau, Optica

Table of Contents
Introduction; About the Authors; Acknowledgments; 1. Fundamentals of Electromagnetic Optics; 2. The Harmonic Regime; 3. Frequency Wave Packet; 4. Spatial Wave Packet; 5. Energy, Causality, and Coherence; 6. Thin-Film Filters; 7. Multilayers in Total Reflection; 8. Light Scattering from Optical Multilayers; 9. Planar Multilayer Micro-Cavities; Conclusion; Selected Books; Index.

Electromagnetic Optics of ThinFilm Coatings

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    Order before 4pm today for delivery by Wed 1 Jul 2026.

    A Hardback by Claude Amra, Michel Lequime, Myriam Zerrad

    15 in stock

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      Publisher: Cambridge University Press
      Publication Date: 14/01/2021
      ISBN13: 9781108488877, 978-1108488877
      ISBN10:

      Description

      Book Synopsis
      Three experts in the field of thin-film optics present a detailed and self-contained theoretical study of planar multilayers and how they can be effectively exploited in both traditional and modern applications. Starting with a discussion of the relevant electromagnetic optics, the fundamental optical properties of multilayers are introduced using an electromagnetic approach based on a direct solving of Maxwell''s equations by Fourier transforms. This powerful approach is illustrated through the comprehensive description of two of the most important phenomena in multilayers, i.e. giant field enhancement in dielectric stacks and light scattering from thin-film optical filters. The same approach is extended to the description of the operation of planar microcavities and the balance of energy between radiated and trapped light. This book will be valuable to researchers, engineers and graduate students with interests in nanophotonics, optical telecommunications, observational astronomy and

      Trade Review
      '… clear and well-written explanations, and very enlightening discussions of TFC-from multilayer stacks to planar microcavities … it makes for rewarding reading, and I recommend it to all students of TFCs.' Christian Brosseau, Optica

      Table of Contents
      Introduction; About the Authors; Acknowledgments; 1. Fundamentals of Electromagnetic Optics; 2. The Harmonic Regime; 3. Frequency Wave Packet; 4. Spatial Wave Packet; 5. Energy, Causality, and Coherence; 6. Thin-Film Filters; 7. Multilayers in Total Reflection; 8. Light Scattering from Optical Multilayers; 9. Planar Multilayer Micro-Cavities; Conclusion; Selected Books; Index.

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