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Fiber Coupling Efficiency in Ocean With Adaptive Optics Corrections

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Date

2023

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Publisher

Optica Publishing Group

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Green Open Access

No

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Abstract

Underwater optical wireless communication (UOWC) is a very promising technology that enables high-speed data transfer through the use of laser beams in an oceanic turbulent medium. The high-tech fiber optical devices, which are already available in the market, can be integrated with the UOWC systems. When integration is achieved, oceanic turbulence, which distorts the wavefront of the propagating laser beam, plays an important role in reducing the fiber coupling efficiency (FCE), which in turn results in reducing the light power received from the fiber optical components. In this paper, we propose the use of the adaptive optics technique in a UOWC system to mitigate the effects of oceanic turbulence and boost the FCE. For this reason, the field correlation for a Gaussian laser beam is derived by using the Huygens-Fresnel principle. This way, the light power over the coupling lens and the light power accepted by the fiber core are formulated under the effect of adaptive optics corrections, which are repre-sented by the number of Zernike modes. The results demonstrate that under the oceanic turbulence effect, the FCE of the UOWC system employing adaptive optics is always larger than that of the UOWC system employing no adaptive optics. (c) 2023 Optica Publishing Group

Description

Baykal, Yahya/0000-0002-4897-0474; Gokce, Muhsin Caner/0000-0003-4465-1983

Keywords

Fields of Science

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

Citation

Gökçe, MC.; Yalçın, A.; Baykal,Y. (2023). "Fiber coupling efficiency in ocean with adaptive optics corrections", Journal Of The Optical Society Of America B-Optical Physics, Vol.40, no.5, pp.949-957.

WoS Q

Q3

Scopus Q

Q2
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OpenCitations Citation Count
2

Source

Journal of the Optical Society of America B

Volume

40

Issue

5

Start Page

949

End Page

957
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Scopus : 3

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4

checked on Feb 23, 2026

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4

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5

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