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Proceedings Paper

The role of diffraction in an extended beacon laser guide star
Author(s): S. Enguehard; B. Hatfield; L. Whiting
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Paper Abstract

The limits to the ability of adaptive optics to achieve spatial propagation reciprocity are determined by diffraction. The beacon is a prominent component in defining the diffractive limit, so diffraction plays a role in the optimal choice of beacon parameters. We show with an explicit example that a point-source beacon is not the optimal choice, and that a point-source beacon cannot be used to measure the diffractive limit of phase-only compensation. At the single scattering level, diffraction dictates the use of an extended coherent beacon. We also show with an explicit example that optical vortices are not branch points, thus a well-defined phase reconstruction from an initially coherent beacon propagated through strong or extensive turbulence will not be hindered by the presence of optical vortices.

Paper Details

Date Published: 23 August 2005
PDF: 6 pages
Proc. SPIE 5895, Target-in-the-Loop: Atmospheric Tracking, Imaging, and Compensation II, 58950B (23 August 2005); doi: 10.1117/12.621105
Show Author Affiliations
S. Enguehard, AMP Research, Inc. (United States)
B. Hatfield, AMP Research, Inc. (United States)
L. Whiting, AMP Research, Inc. (United States)


Published in SPIE Proceedings Vol. 5895:
Target-in-the-Loop: Atmospheric Tracking, Imaging, and Compensation II
Michael T. Valley; Mikhail A. Vorontsov, Editor(s)

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