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Propagation Properties of Cylindrical Sinc Gaussian Beam

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Date

2016

Journal Title

Journal ISSN

Volume Title

Publisher

Taylor & Francis Ltd

Open Access Color

Green Open Access

No

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Abstract

We investigate the propagation properties of cylindrical sinc Gaussian beam in turbulent atmosphere. Since an analytic solution is hardly derivable, the study is carried out with the aid of random phase screens. Evolutions of the beam intensity profile, beam size and kurtosis parameter are analysed. It is found that on the source plane, cylindrical sinc Gaussian beam has a dark hollow appearance, where the side lobes also start to emerge with increase in width parameter and Gaussian source size. During propagation, beams with small width and Gaussian source size exhibit off-axis behaviour, losing the dark hollow shape, accumulating the intensity asymmetrically on one side, whereas those with large width and Gaussian source size retain dark hollow appearance even at long propagation distances. It is seen that the beams with large widths expand more in beam size than the ones with small widths. The structure constant values chosen do not seem to alter this situation. The kurtosis parameters of the beams having small widths are seen to be larger than the ones with the small widths. Again the choice of the structure constant does not change this trend.

Description

Bayraktar, Mert/0000-0002-0337-7650

Keywords

Cylindrical Sinc Gaussian Beam, Beam Propagation, Kurtosis Parameter

Fields of Science

0103 physical sciences, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 01 natural sciences

Citation

Eyyuboğlu, H.T., Bayraktar, M. (2016). Propagation properties of cylindrical sinc Gaussian beam. Journal Of Modern Optics, 63(17), 1706-1712. http://dx.doi.org/10.1080/09500340.2016.1170902

WoS Q

Q4

Scopus Q

Q3
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OpenCitations Citation Count
13

Source

Journal of Modern Optics

Volume

63

Issue

17

Start Page

1706

End Page

1712
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Scopus : 13

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Mendeley Readers : 5

SCOPUS™ Citations

13

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Web of Science™ Citations

12

checked on Feb 27, 2026

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3

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0.35665156

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