Optical and RF Beam Propagation in Turbulent Media

Optical and RF Beam Propagation in Turbulent Media
Author: Nelofar Mosavi
Publisher:
Total Pages: 216
Release: 2017
Genre:
ISBN:

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The optical beam spread and the optical beam quality factor in the presence of both an initial quartic phase aberration and atmospheric turbulence is analyzed. We obtain analytical expressions for both the mean-square beam radius and the beam quality factor using the moment method. We compare these expressions to the results from Monte Carlo simulations, which allows us to mutually validate the theory and the Monte Carlo simulation codes. We also discuss the reason for the discrepancy between the moment method and the classical approach for calculating the ensemble-averaged mean-square beam radius in a turbulent atmosphere that is described by Andrews and Phillips and by Fante.

Optical Beam Propagation in Turbulent Media

Optical Beam Propagation in Turbulent Media
Author: Ronald Louis Fante
Publisher:
Total Pages: 88
Release: 1975
Genre: Atmospheric turbulence
ISBN:

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The most recent developments on the propagation of microwave and optical beams in turbulent media, such as the clear atmosphere are discussed. Among the phenomena considered are beam spreading, beam wander, loss of coherence, scintillations, angle-of-arrival variations, and short pulse effects. Also included is a discussion of methods of compensation of the effect of turbulence on communications and imaging systems.

Optical Beam Propagation in Turbulent Media

Optical Beam Propagation in Turbulent Media
Author: Ronald L. Fante
Publisher:
Total Pages: 0
Release: 1975
Genre: Atmospheric turbulence
ISBN:

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The most recent developments on the propagation of microwave and optical beams in turbulent media, such as the clear atmosphere are discussed. Among the phenomena considered are beam spreading, beam wander, loss of coherence, scintillations, angle-of-arrival variations, and short pulse effects. Also included is a discussion of methods of compensation of the effect of turbulence on communications and imaging systems.

Experimental Investigations of Optical Propagation in Atmospheric Turbulence

Experimental Investigations of Optical Propagation in Atmospheric Turbulence
Author: Michael W. Fitzmaurice
Publisher:
Total Pages: 196
Release: 1971
Genre: Atmospheric chemistry
ISBN:

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The pertinent theoretical background and the results of a group of experiments conducted over 0.4- and 1.17-km near-ground horizontal ranges are presented. (1) The log-amplitude variances for HeNe (0.633 μm) and CO2 (10.6 μm) laser beams were found to have a ratio of 26.8, which is in close agreement with the predictions of Rytov-based spherical-wave theory. (2) Published measurements of the saturation level of the log-amplitude variance are reviewed and several inconsistencies noted. (3) The spatial correlation function of irradiance field was measured and found to agree with theory. The degree of correlation between different frequency beams which had traversed the same optical path was also measured and compared to theory. The data exhibited an unacceptably large scatter and did not show the wavelength dependence. (4) The log-normal, Rayleigh, and Rice probability distributions are discussed in terms of their applicability to irradiance statistics. Relatively weak 10.6 μm irradiance fluctuations were found to be equally well described by the log-normal and Rice distributions; strong fluctuations obtained at 0.488 μm were clearly best described by the log-normal distribution.

Adaptive Beaming and Imaging in the Turbulent Atmosphere

Adaptive Beaming and Imaging in the Turbulent Atmosphere
Author: Vladimir Petrovich Lukin
Publisher: SPIE Press
Total Pages: 222
Release: 2002
Genre: Science
ISBN: 9780819443373

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Due to the wide application of adaptive optical systems, an understanding of optical wave propagation in randomly inhomogeneous media has become essential, and several numerical models of individual AOS components and of efficient correction algorithms have been developed. This monograph contains detailed descriptions of the mathematical experiments that were designed and carried out during more than a decade's worth of research.

Laser Beam Propagation in the Atmosphere

Laser Beam Propagation in the Atmosphere
Author: J. W. Strohbehn
Publisher: Springer
Total Pages: 328
Release: 2014-03-12
Genre: Technology & Engineering
ISBN: 9783662311615

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With contributions by numerous experts

Optical Beam Propagation in Oceanic Turbulence

Optical Beam Propagation in Oceanic Turbulence
Author: Nathan Farwell
Publisher:
Total Pages:
Release: 2014
Genre:
ISBN:

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Optical beam propagation through oceanic waters is explored using a recently proposed model for the refractive index fluctuations in oceanic turbulence. The model provides an accurate depiction of the ocean through the inclusion of both temperature and salinity fluctuations to the index of refraction. Beam characteristics of fundamental importance to communication links, remote sensing, and laser radar links are explored including intensity, degree of coherence, and scintillation. Theoretical values of these parameters are found through the use of classical Rytov theory and compared to those found using a numerical optics random phase screen simulation. The impact of the oceanic turbulence is compared with that found in atmospheric turbulence as well as other random media such as biological tissue. The results presented serve as a foundation for the study of optical beam propagation in oceanic turbulence comparable to the widely studied area of propagation through atmospheric turbulence.

NASA Technical Paper

NASA Technical Paper
Author:
Publisher:
Total Pages: 706
Release: 1978
Genre: Astronautics
ISBN:

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Beam Propagation Method for Design of Optical Waveguide Devices

Beam Propagation Method for Design of Optical Waveguide Devices
Author: Ginés Lifante Pedrola
Publisher: John Wiley & Sons
Total Pages: 401
Release: 2015-12-21
Genre: Science
ISBN: 1119083370

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The basic of the BPM technique in the frequency domain relies on treating the slowly varying envelope of the monochromatic electromagnetic field under paraxial propagation, thus allowing efficient numerical computation in terms of speed and allocated memory. In addition, the BPM based on finite differences is an easy way to implement robust and efficient computer codes. This book presents several approaches for treating the light: wide-angle, scalar approach, semivectorial treatment, and full vectorial treatment of the electromagnetic fields. Also, special topics in BPM cover the simulation of light propagation in anisotropic media, non-linear materials, electro-optic materials, and media with gain/losses, and describe how BPM can deal with strong index discontinuities or waveguide gratings, by introducing the bidirectional-BPM. BPM in the time domain is also described, and the book includes the powerful technique of finite difference time domain method, which fills the gap when the standard BPM is no longer applicable. Once the description of these numerical techniques have been detailed, the last chapter includes examples of passive, active and functional integrated photonic devices, such as waveguide reflectors, demultiplexers, polarization converters, electro-optic modulators, lasers or frequency converters. The book will help readers to understand several BPM approaches, to build their own codes, or to properly use the existing commercial software based on these numerical techniques.

Propagation of a Finite Optical Beam in an Inhomogeneous Medium

Propagation of a Finite Optical Beam in an Inhomogeneous Medium
Author: R. F. Lutomirski
Publisher:
Total Pages: 35
Release: 1970
Genre: Meteorological optics
ISBN:

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The Memorandum is part of a study of the effect of atmospheric turbulence on optical and infrared reconnaissance and guidance equipment. A quantitative understanding of the manner in which an initially coherent beam of finite cross section propagates is required for the prediction of the performance of various devices employing lasers for target acquisition or guidance in tactical missions, optical communication systems, and other devices. The Memorandum calculates the mean intensity distribution for an arbitrary amplitude and phase distribution in a finite aperture in both the near and far field and examines in detail the case of a uniform distribution across a circular aperture. The results should be of use to those interested in propagation theory and its applications to laser range finders, laser line scanners, communication systems, and various guidance and other systems employing an illuminating beam. (Author).