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Thin-film design : modulated thickness and other stopband design methods

Author: Bruce E Perilloux
Publisher: Bellingham, Wash. : SPIE Press, ©2002.
Series: Tutorial texts in optical engineering, v. TT 57.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This text presents several new thin-film design methods that can produce multiple stopbands as well as passbands. It is written for thin-film designers and students with advanced knowledge of multilayer, optical thin-film coatings. The text focuses on coatings that have high reflectance performance requirements in more than one spectral wavelength band or region.
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Perilloux, Bruce E.
Thin-film design.
Bellingham, Wash. : SPIE, ©2002
(DLC) 2002019550
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Bruce E Perilloux
ISBN: 9780819478641 0819478644 9781615837281 1615837280 9780819471284 0819471283
OCLC Number: 435971875
Reproduction Notes: Electronic reproduction. [S.l.] : HathiTrust Digital Library, 2010. MiAaHDL
Description: 1 online resource (xvi, 116 pages) : illustrations.
Details: Master and use copy. Digital master created according to Benchmark for Faithful Digital Reproductions of Monographs and Serials, Version 1. Digital Library Federation, December 2002.
Contents: Preface --
Definitions --
Chapter 1 Introduction. 1.1 Review of Mathematics for Thin-Film Design. 1.2 Analytical, Discrete-layer, Thin-Film Designs. 1.3 Thin-Film Design Methods. 1.4 Inhomogeneous Coating Designs and Synthesis. 1.5 Summary. 1.6 Exercises. Chapter 1 figures --
Chapter 2 Sinusoidal Thickness Modulated Designs. 2.1 Review of Stopbands and Passbands. 2.2 Sinusoidal Modulation. 2.3 Degenerate Cases of TMDs. 2.4 Sinusoidal Thickness Modulated Designs. 2.5 Determination of All Possible TMD Stopbands. 2.6 Electric Field Analysis of a TMD. 2.7 Reflectance Phase Shift of a TMD. 2.8 Applications. 2.9 Exercises. Chapter 2 figures --
Chapter 3 Discrete Apodization of TMDs. 3.1 Introduction. 3.2 Amplitude Modulation. 3.3 Gaussian Envelope Functions. 3.4 Application. 3.5 Exercises. Chapter 3 figures. Chapter 4 Other Complex TMDs. 4.1 Chirped TMD Modulation. 4.2 Half-modulation TMDs. 4.3 Exercises. Chapter 4 figures --
Chapter 5 Quarter-wave Stack Transformation. 5.1 Stack Transformation Method. 5.2 Quarter-wave Stack Transforms. 5.3 Linear Quarter-wave Stack Transformation Method. 5.4 High-order Harmonic Stopbands of Transformed Quarter-wave Stacks. 5.5 Applications. 5.6 Exercises. Chapter 5 figures --
Appendix A: Useful Equations for Discrete-layer Thin-Film Calculations --
Appendix B: Chebyshev Polynomials of the Second Kind --
Appendix C: FORTRAN90 Source Code for the Determination of All Possible TMD Stopbands --
Appendix D: Stopband Positions for Selected TMDs --
Appendix E: Summary of TMD and LOST Equations --
References --
Index.
Series Title: Tutorial texts in optical engineering, v. TT 57.
Responsibility: by Bruce E. Perilloux.

Abstract:

This work presents thin-film design methods that can produce multiple stopbands as well as passbands. It focuses on coatings that have high reflectance performance requirements in more than one  Read more...

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