Scintillation Index of Optical Spherical Wave Propagating Through Biological Tissue
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Date
2017
Journal Title
Journal ISSN
Volume Title
Publisher
Taylor & Francis Ltd
Open Access Color
Green Open Access
Yes
OpenAIRE Downloads
0
OpenAIRE Views
5
Publicly Funded
No
Abstract
Effects of the tissue turbulence on the propagation of an optical spherical wave are analysed. For this purpose, scintillation index of an optical spherical wave which is propagating in a soft tissue is formulated and evaluated in weakly turbulent soft tissue. Scintillation index of the optical spherical wave is examined against the changes in the tissue parameters which are the tissue length between the optical spherical wave source and the detector, random variations in the refractive index of the tissue and the outer scale of the tissue turbulence. According to our graphical outputs, it is observed that increase in the random variations of the refractive index of the tissue results in an increase in the scintillation index at a certain realization of the turbulence spectrum. On the other hand, larger outer scales and longer tissue lengths yield larger scintillations. The variation of the scintillation index of the optical spherical wave versus the wavelength is also investigated. It is found that at small tissue lengths, wavelength has almost no effect on the scintillations; however, when the tissue length reaches a certain value, shorter wavelengths give rise to larger intensity fluctuations.
Description
Baykal, Yahya/0000-0002-4897-0474
ORCID
Keywords
Optical Wave Propagation, Optical Imaging, Tissue Turbulence, Scintillation Index
Fields of Science
0103 physical sciences, 01 natural sciences
Citation
Baykal, Yahya; Arpali, Çağlar; Arpali, Serap Altay, "Scintillation index of optical spherical wave propagating through biological tissue", Journal Of Modern Optics, Vol. 64, No. 2, pp. 138-142, (2017).
WoS Q
Q4
Scopus Q
Q3

OpenCitations Citation Count
24
Source
Journal of Modern Optics
Volume
64
Issue
2
Start Page
138
End Page
142
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CrossRef : 6
Scopus : 20
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Mendeley Readers : 4
SCOPUS™ Citations
20
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Web of Science™ Citations
22
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Page Views
1
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