Description

Book Synopsis
Reflecting the growing importance of multi-mode transmission media in communications, radar, sensors, remote sensing, and many other industrial applications, this work presents analytic methods for calculating the transmission statistics of microwave and optical components with random imperfections.

The emphasis here is on multi-mode waveguides, optical fibers, and directional couplers-described by the coupled line equations with random parameters-as well as multi-layer optical coatings used as windows, mirrors, or filters. The author clearly explains how to calculate the transmission statistics of these devices in terms of their coupling or optical thickness statistics, in both the time and frequency domains. This unique resource for engineers and researchers involved in the design of multi-mode transmission media:
* Focuses on matrix techniques and the various types of problems to which they can be applied
* Incorporates many new results developed by the author
*

Table of Contents
Coupled Line Equations.

Guides with White Random Coupling.

Examples- White Coupling.

Directional Coupler with White Propagation Parameters.

Guides with General Coupling Spectra.

Four-Mode Guide with Exponential Coupling Covariance.

Random Square-Wave Coupling.

Multi-Layer Coatings with Random Optical Thickness.

Conclusion.

Appendices.

Index.

Electromagnetic Propagation in MultiMode Random

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    A Hardback by Harrison E. Rowe

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      View other formats and editions of Electromagnetic Propagation in MultiMode Random by Harrison E. Rowe

      Publisher: John Wiley & Sons Inc
      Publication Date: 22/03/1999
      ISBN13: 9780471110033, 978-0471110033
      ISBN10: 0471110035

      Description

      Book Synopsis
      Reflecting the growing importance of multi-mode transmission media in communications, radar, sensors, remote sensing, and many other industrial applications, this work presents analytic methods for calculating the transmission statistics of microwave and optical components with random imperfections.

      The emphasis here is on multi-mode waveguides, optical fibers, and directional couplers-described by the coupled line equations with random parameters-as well as multi-layer optical coatings used as windows, mirrors, or filters. The author clearly explains how to calculate the transmission statistics of these devices in terms of their coupling or optical thickness statistics, in both the time and frequency domains. This unique resource for engineers and researchers involved in the design of multi-mode transmission media:
      * Focuses on matrix techniques and the various types of problems to which they can be applied
      * Incorporates many new results developed by the author
      *

      Table of Contents
      Coupled Line Equations.

      Guides with White Random Coupling.

      Examples- White Coupling.

      Directional Coupler with White Propagation Parameters.

      Guides with General Coupling Spectra.

      Four-Mode Guide with Exponential Coupling Covariance.

      Random Square-Wave Coupling.

      Multi-Layer Coatings with Random Optical Thickness.

      Conclusion.

      Appendices.

      Index.

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