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Temporal spectrum of beam wander for Gaussian Schell-model beams propagating in atmospheric turbulence with finite outer scale

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Abstract

The temporal spectrum of beam wander is formulated by considering a Gaussian Schell-model beam passing through atmospheric turbulence with a finite outer scale. Two simpler asymptotic formulas for the temporal spectrum of beam wander within the high- and low-frequency ranges are derived, respectively. Based on the formulations, the effects of the initial partial coherence of the beam, finite outer scale of turbulence, initial beam radius, and initial phase front radius of curvature on the temporal spectrum of beam wander are analyzed by numerical examples.

© 2013 Optical Society of America

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Corrections

Chunyi Chen and Huamin Yang, "Temporal spectrum of beam wander for Gaussian Schell-model beams propagating in atmospheric turbulence with finite outer scale: publisher’s note," Opt. Lett. 42, 4933-4933 (2017)
https://opg.optica.org/ol/abstract.cfm?uri=ol-42-23-4933

3 November 2017: A typographical correction was made to the title.


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Equations (8)

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