Methods for Computer Design of Diffractive Optical Elements
Wiley Series in Lasers and Applications (Series Nr. 1)

1. Edition February 2002
XVIII, 766 Pages, Hardcover
Handbook/Reference Book
Short Description
Computer generated optical elements are new and important tools in use in applications such as manufacturing, point of sale scanning, and optical communications. This book discusses all the major topics in the field, collecting current research previously only found in research papers. This book serves as the only comprehensive reference guide for people in the field of diffractive optical elements.
The first inclusive book on the cutting-edge field of modern optics and its applications
For the first time, all the major aspects of designing planar DOEs are covered in one book, comprised of original methods developed by experts at the Russian Academy of Sciences' Image Processing Systems Institute. The breadth of Methods for Computer Design of Diffractive Optical Elements covers DOE production, beginning from the design techniques and the software, to the fabrication technology, experimental studies, and testing of DOEs, including all major DOE application fields and DOE types. The contributors also detail the three key approaches to designing phase DOEs: a geometric optics (ray-tracing) method, the scalar diffraction (Kirchhoff) method, and the rigorous design based on electromagnetic theory. Methods for Computer Design of Diffractive Optical Elements is an estimable reference for experts in the aerospace industry, research and development institutes, the automobile industry, as well as students and university professors.
Introduction in Diffractive Optics (V.A. Soifer).
Iterative Methods for Designing DOEs (L.L. Doskolovich, et al.).
Design of DOE Using Electromagnetic Theory (L.L. Doskolovich, et al..
Technology of DOE Fabrication (D.L. Golovashkin, et al.).
DOE for Focusing the Laser Light (L.L. Doskolovich, et al..
Selection of Laser Light Modes (V.S. Pavelyer and U.A. Soifer).
Light Beams with Periodic Properties (S.N. Khonina, et al.).
Wavefront Correction (N.L. Kazanskiy, et al.).
DOE-Based Lighting Devices (N.L. Kazanskiy).
Optical Data Processing Using DOEs (S.N. Khonina, et al.).
Index.