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Paraxial Ray Tracing Through Noncoaxial Astigmatic Optical Systems, and a 5 x 5 Augmented System Matrix

W. F. Harris

Open publisher page 88 citations

Abstract

The matrix method of tracing a paraxial ray through a coaxial optical system that contains spherical refracting elements requires a 2 x 2 system matrix. This paper shows that a suitable 5 x 5 system matrix enables one to apply the same method in the general case of systems that may be noncoaxial and that may contain astigmatic elements. The systems may contain prisms and decentered astigmatic lenses, for example.

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What this paper is about

The matrix method of tracing a paraxial ray through a coaxial optical system that contains spherical refracting elements requires a 2 x 2 system matrix. This paper shows that a suitable 5 x 5 system matrix enables one to apply the same method in the general case of systems that may be noncoaxial and that may contain astigmatic elements. The systems may contain prisms and decentered astigmatic lenses, for example.

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OpenAlex reports 88 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The matrix method of tracing a paraxial ray through a coaxial optical system that contains spherical refracting elements requires a 2 x 2 system matrix. This paper shows that a suitable 5 x 5 system matrix enables one to apply the same method in the general case of systems that may be noncoaxial and that may contain astigmatic elements. The systems may contain prisms and decentered astigmatic lenses, for example.

Key concepts: Paraxial approximation, Ray transfer matrix analysis, Ray tracing (physics), Matrix (chemical analysis), Distributed ray tracing, Geometrical optics, Tracing, Physics

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Paraxial Ray Tracing Through Noncoaxial Astigmatic Optical Systems, and a 5 x 5 Augmented System Matrix — Research Paper | ScholarLens