Computer Design of Diffractive Optics ( Woodhead Publishing Series in Electronic and Optical Materials )

Publication series :Woodhead Publishing Series in Electronic and Optical Materials

Author: Soifer   V A  

Publisher: Elsevier Science‎

Publication year: 2012

E-ISBN: 9780857093745

P-ISBN(Paperback): 9781845696351

P-ISBN(Hardback):  9781845696351

Subject:

Language: ENG

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Description

Diffractive optics involves the manipulation of light using diffractive optical elements (DOEs). DOEs are being widely applied in such areas as telecommunications, electronics, laser technologies and biomedical engineering. Computer design of diffractive optics provides an authoritative guide to the principles and applications of computer-designed diffractive optics.

The theoretical aspects underpinning diffractive optics are initially explored, including the main equations in diffraction theory and diffractive optical transformations. Application of electromagnetic field theory for calculating diffractive gratings and related methods in micro-optics are discussed, as is analysis of transverse modes of laser radiation and the formation of self-replicating multimode laser beams. Key applications of DOEs reviewed include geometrical optics approximation, scalar approximation and optical manipulation of micro objects, with additional consideration of multi-order DOEs and synthesis of DOEs on polycrystalline diamond films.

With its distinguished editor and respected team of expert contributors, Computer design of diffractive optics is a comprehensive reference tool for professionals and academics working in the field of optical engineering and photonics.

  • Explores the theoretical aspects underpinning diffractive optics
  • Discusses key applications of diffractive optical elements
  • A comprehensive reference for professionals and academics in optical

Chapter

Cover

pp.:  1 – 2

Copyright

pp.:  3 – 4

Contents

pp.:  4 – 12

Preface

pp.:  12 – 14

3 Calculation of diffractive optical elements in geometrical optics approximation

pp.:  105 – 209

4 Calculation of the DOE in the scalar approximation of the diffraction theory

pp.:  209 – 305

5 Multi-order diffractive optical elements

pp.:  305 – 359

6 Application of the theory of the electromagnetic field for calculating diffractive gratings

pp.:  359 – 438

7 Methods of the theory of the electromagnetic field in micro-optics

pp.:  438 – 528

8 Analysis of transverse modes of laser radiation

pp.:  528 – 684

9 Formation of self-reproducing multimode laser beams

pp.:  684 – 801

10 Optical manipulation of micro-objects by DOE

pp.:  801 – 846

11 Synthesis of DOE on polycrystalline diamond films

pp.:  846 – 892

Index

pp.:  892 – 897

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