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Journal ArticleDOI

A diffraction beam field expressed as the superposition of Gaussian beams

J. J. Wen, +1 more
- 01 May 1988 - 
- Vol. 83, Iss: 5, pp 1752-1756
TLDR
In this paper, the authors present an analytical approach to express any axisymmetric beam field in a simple analytical form, by superposition of Gaussian beams about the same axis but with beam waists of different sizes located at different positions along the axis.
Abstract
The diffraction field of a Gaussian planar velocity distribution is a Gaussian beam function under the condition (ka)2≫1. This property makes a series of Gaussian functions attractive as a possible base function set. The new approach presented enables one to express any axisymmetric beam field in a simple analytical form—the superposition of Gaussian beams about the same axis but with beam waists of different sizes located at different positions along the axis. A computer optimization is used to evaluate the coefficients, as well as the beam waists and their positions. The extreme case of a piston radiator is used to test the approach. Good agreement between a ten‐term Gaussian beam solution and the results of numerical integration (or analytical solution on axis) is obtained throughout the beam field: in the farfield, the transition region, and the nearfield. Discrepancies exist only in the extreme nearfield (<0.1 times the Fresnel distance). For surface velocity distributions that are less discontinuous...

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Citations
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Journal ArticleDOI

Approximate description for Bessel, Bessel–Gauss, and Gaussian beams with finite aperture

TL;DR: In this article, an approximate analysis for the propagation of Bessel, Bessel-Gauss, and Gaussian beams with a finite aperture is derived, based on the fact that the circ function can be expanded into an approximate sum of complex Gaussian functions, so that these three beams are typically expressed as a combination of a set of infinite-aperture Bessel Gauss beams.
Journal ArticleDOI

Efficiency of capturing a phase image using cone-beam x-ray Talbot interferometry.

TL;DR: The efficiency of x-ray Talbot interferometry (XTI), a technique based on the Talbot effect for measuring a wavefront gradient, is assessed in terms of how quickly it can capture a high-quality phase image with a large signal-to-noise ratio for a given incident photon number.
Journal ArticleDOI

Propagation of flat-topped multi-Gaussian laser beams.

TL;DR: The multi-Gaussian beam shape is proposed as a model for aperture functions and laser beam profiles that have a nearly flat top but whose sides decrease continuously.
Journal ArticleDOI

Propagation of partially coherent twisted anisotropic Gaussian Schell-model beams through an apertured astigmatic optical system

TL;DR: By expanding the hard-aperture function into a finite sum of complex Gaussian functions, an approximate analytical formula is derived for a partially coherent twisted anisotropic Gaussian Schell-model (AGSM) beam propagating through an apertured paraxial general astigmatic (GA) optical system by use of a tensor method.
Journal ArticleDOI

Propagation of hollow Gaussian beams through apertured paraxial optical systems.

TL;DR: An approximate analytical formula for a hollow Gaussian beam propagating through an apertured paraxial stigmatic (ST) ABCD optical system is derived and by using a tensor method the results provide a convenient way for studying the propagation and transformation of a hollowGaussian beam and a hollow elliptical Gaussianbeam through anApertured general optical system.