Scintillations of Partially Coherent Multiple Gaussian Beams in Turbulence
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Date
2009
Journal Title
Journal ISSN
Volume Title
Publisher
Optical Soc Amer
Open Access Color
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
For an incidence composed of partially coherent multiple Gaussian beams, Huygens-Fresnel principle-based on-axis scintillation index is formulated in a weakly turbulent homogeneous horizontal atmospheric path. Our general formulation is applied to two examples of partially coherent annular and partially coherent flat-topped Gaussian beams. Compared to partially coherent single Gaussian beam scintillations, annular beam scintillations seem to possess higher values for all partial coherence levels, whereas flat-topped Gaussian beam intensity fluctuations are slightly larger, especially at lower coherence levels and at larger source sizes. At the same source partial coherence, annular beams exhibit smaller scintillations for larger ring sizes. For flat-topped Gaussian beams, except for very small and very large source sizes, as the number of Gaussian beams forming the flatness increases, intensity fluctuations also increase, a trend applicable for different degrees of coherence. A trend valid for both single and multiple Gaussian incidence, except for certain annular beams of large primary beam sizes, is that the scintillations decrease as the source becomes less coherent. Being applicable for all degrees of source coherences, for both beams examined, scintillations increase steadily as the Rytov plane wave scintillation index increases. (C) 2009 Optical Society of America
Description
Keywords
Fields of Science
0103 physical sciences, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 01 natural sciences
Citation
Baykal, Y., Eyyuboğlu, H.T., Cai, Y. (2009). Scintillations of partially coherent multiple Gaussian beams in turbulence. Applied Optics, 48(10), 1943-1954. http://dx.doi.org/10.1364/AO.48.001943
WoS Q
Q3
Scopus Q
Q3

OpenCitations Citation Count
122
Source
Applied Optics
Volume
48
Issue
10
Start Page
1943
End Page
1954
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Citations
CrossRef : 119
Scopus : 136
PubMed : 1
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Mendeley Readers : 19
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136
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Web of Science™ Citations
128
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Page Views
3
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