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Anisotropy effect on multi-Gaussian beam propagation in turbulent ocean

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Abstract

Average transmittance of multi-Gaussian (flat-topped and annular) optical beams in an anisotropic turbulent ocean is examined analytically based on the extended Huygens–Fresnel principle. Transmittance variations depending on the link length, anisotropy factor, salinity and temperature contribution factor, source size, beam flatness order of flat-topped beam, Kolmogorov microscale length, rate of dissipation of turbulent kinetic energy, rate of dissipation of the mean squared temperature, and thickness of annular beam are examined. Results show that all these parameters have effects in various forms on the average transmittance in an anisotropic turbulent ocean. Hence, the performance of optical wireless communication systems can be improved by taking into account the variation of average transmittance versus the above parameters.

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DOI:10.3788/col201816.080102

所属栏目:Atmospheric optics and oceanic optics

收稿日期:2018-04-05

录用日期:2018-06-13

网络出版日期:2018-07-27

作者单位    点击查看

Yalcin Ata:TüBITAK Defense Industries Research and Development Institute (TüBITAK SAGE), P.K. 16 Mamak, 06261 Ankara, Turkey
Yahya Baykal:Cankaya University, Department of Electrical-Electronics Engineering, Yukariyurtcu mah. Mimar Sinan cad., 06790 Ankara, Turkey

联系人作者:Yalcin Ata(ylcnata@gmail.com)

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引用该论文

Yal??n Ata, Yahya Baykal, "Anisotropy effect on multi-Gaussian beam propagation in turbulent ocean," Chinese Optics Letters 16(8), 080102 (2018)

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