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Beam Wander of J 0- and I 0-Bessel Gaussian Beams Propagating in Turbulent Atmosphere

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Date

2010

Journal Title

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Volume Title

Publisher

Springer

Open Access Color

Green Open Access

No

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Abstract

Root mean square (rms) beam wander of J (0)-Bessel Gaussian and I (0)-Bessel Gaussian beams, normalized by the rms beam wander of the fundamental Gaussian beam, is evaluated in atmospheric turbulence. Our formulation is based on the first and the second statistical moments obtained from the Rytov series. It is found that after propagating in atmospheric turbulence, the collimated J (0)-Bessel Gaussian and the I (0)-Bessel Gaussian beams have smaller rms beam wander than that of the Gaussian beam, regardless of the choice of Bessel width parameter. However, the extent of such an advantage depends on the chosen width parameter, Gaussian source size, propagation distance and the wavelength. Focusing at finite distances of the considered beams causes the rms beam wander to decrease sharply at the propagation distances equal to the focusing parameter.

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Fields of Science

0103 physical sciences, 01 natural sciences, 0104 chemical sciences

Citation

Cil, C. Z...et al. "Beam wander of J (0)- and I (0)-Bessel Gaussian beams propagating in turbulent atmosphere",Applied Physıcs B-Lasers and Optics, Vol. 98, No. 1, pp. 195-202, (2010).

WoS Q

Q3

Scopus Q

Q2
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OpenCitations Citation Count
24

Source

Applied Physics B

Volume

98

Issue

1

Start Page

195

End Page

202
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Scopus : 28

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SCOPUS™ Citations

28

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Web of Science™ Citations

27

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2

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