1990Applied OpticsRequires access

Fresnel diffraction of a Gaussian laser beam by polished metal cylinders

Lars Benckert, Lars Forsberg, Nils-Erik Molin

Open publisher page 9 citations

Abstract

A laser beam touching the periphery of a polished cylinder is subjected to both diffraction and reflection. In the area where diffracted light and reflected light interact the resulting intensity distribution differs from the pattern predicted by diffraction theory for a sharp edge. The difference increases with cylinder radius. In this paper it is shown that a good description of the resulting intensity pattern is obtained by adding the reflected light amplitude to the diffracted amplitude as predicted by the Fresnel-Kirchhoff theory for a sharp edge.

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What this paper is about

A laser beam touching the periphery of a polished cylinder is subjected to both diffraction and reflection. In the area where diffracted light and reflected light interact the resulting intensity distribution differs from the pattern predicted by diffraction theory for a sharp edge. The difference increases with cylinder radius. In this paper it is shown that a good description of the resulting intensity pattern is obtained by adding the reflected light amplitude to the diffracted amplitude as predicted by the Fresnel-Kirchhoff theory for a sharp edge.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A laser beam touching the periphery of a polished cylinder is subjected to both diffraction and reflection. In the area where diffracted light and reflected light interact the resulting intensity distribution differs from the pattern predicted by diffraction theory for a sharp edge. The difference increases with cylinder radius. In this paper it is shown that a good description of the resulting intensity pattern is obtained by adding the reflected light amplitude to the diffracted amplitude as predicted by the Fresnel-Kirchhoff theory for a sharp edge.

Key concepts: Optics, Diffraction, Fresnel diffraction, Fresnel zone, Fresnel number, RADIUS, Fresnel equations, Cylinder

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