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Fundamentals of practical aberration theory : fundamental knowledge and technics for optical designers

Author: Yoshiya Matsui; Kyōji Nariai
Publisher: Singapore ; River Edge, N.J. : World Scientific, ©1993.
Edition/Format:   Print book : EnglishView all editions and formats
Summary:
Derivation of aberration theory. Practical aberration theory and its formula. Helmholtz lagrange invariant, derivation of formulae for calculating aberration coefficients through the dividual surfaces in an optical system.
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Document Type: Book
All Authors / Contributors: Yoshiya Matsui; Kyōji Nariai
ISBN: 9810213492 9789810213497
OCLC Number: 27896710
Description: viii, 182 pages : illustrations ; 23 cm
Contents: Part 1 Introduction: role of the aberration theory; paraxial theory as the basis for the aberration theory; application of paraxial theory to lens design. Part 2 Derivation of the aberration theory: characteristic function of Hamilton (point eikonal); outline of the Herzberger theory. Part 3 Practical aberration theory and its formulae: transformation of the Herzberger aberration theory into practical form; normalization of aberration coefficients; aberration coefficients for a thin lens approximation; intrinsic coefficients and aberrations with characteristic matrix. Part 4 Case studies: determination of initial configuration of an optical system and the application of aberration theory; determination of configuration of a telephoto type lens; determination of a configuration in a triplet; design of a catadioptric system; invariant of Helmholtz-Lagrange; derivation of formulae of calculation of aberration coefficients for individual surface in an optical system; derivation of formulae of calculation of chromatic aberration coefficients for individual surface in an optical system 195; initial values of paraxial rays for the calculation of aberration coefficients.
Responsibility: Yoshiya Matsui, Kyoji Nariai.

Abstract:

This discussion of aberration theory begins with its derivation and ends with its various techniques which can be applied effectively to practical design problems. These techniques are illustrated,  Read more...

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