Javascript must be enabled to continue!
Non-Classic Atmospheric Optical Turbulence: Review
View through CrossRef
Theoretical models and results of experimental campaigns relating to non-classic regimes occurring in atmospheric optical turbulence are overviewed. Non-classic turbulence may manifest itself through such phenomena as a varying power law of the refractive-index power spectrum, anisotropy, the presence of constant-temperature gradients and coherent structures. A brief historical introduction to the theories of optical turbulence, both classic and non-classic, is first presented. The effects of non-classic atmospheric turbulence on propagating light beams are then discussed, followed by the summary of results on measuring the non-classic turbulence, on its computer and in-lab simulations and its controlled synthesis. The general theory based on the extended Huygens–Fresnel method, capable of quantifying various effects of non-classic turbulence on propagating optical fields, including the increased light diffraction, beam profile deformations, etc., is then outlined. The review concludes by a summary of optical engineering applications that can be influenced by atmospheric non-classic turbulence, e.g., remote sensing, imaging and wireless optical communication systems. The review makes an accent on the results developed by the authors for the recent AFOSR MURI project on deep turbulence.
Title: Non-Classic Atmospheric Optical Turbulence: Review
Description:
Theoretical models and results of experimental campaigns relating to non-classic regimes occurring in atmospheric optical turbulence are overviewed.
Non-classic turbulence may manifest itself through such phenomena as a varying power law of the refractive-index power spectrum, anisotropy, the presence of constant-temperature gradients and coherent structures.
A brief historical introduction to the theories of optical turbulence, both classic and non-classic, is first presented.
The effects of non-classic atmospheric turbulence on propagating light beams are then discussed, followed by the summary of results on measuring the non-classic turbulence, on its computer and in-lab simulations and its controlled synthesis.
The general theory based on the extended Huygens–Fresnel method, capable of quantifying various effects of non-classic turbulence on propagating optical fields, including the increased light diffraction, beam profile deformations, etc.
, is then outlined.
The review concludes by a summary of optical engineering applications that can be influenced by atmospheric non-classic turbulence, e.
g.
, remote sensing, imaging and wireless optical communication systems.
The review makes an accent on the results developed by the authors for the recent AFOSR MURI project on deep turbulence.
Related Results
Characteristic parameters of adaptive optical imaging system in oceanic turbulence
Characteristic parameters of adaptive optical imaging system in oceanic turbulence
Since recently one is interested in underwater communications, imaging, sensing and lidar appeared, it is important to study characteristic parameters of the adaptive optical imagi...
Quantum turbulence
Quantum turbulence
Abstract
Chapter 5 delves into quantum turbulence in superfluid helium and atomic Bose-Einstein condensates (BECs). The foundation of quantum turbulence research ...
Impact of magneto-rotational instability on grain growth in protoplanetary disks
Impact of magneto-rotational instability on grain growth in protoplanetary disks
Grain growth in protoplanetary disks is the first step towards planet formation. One of the most important pieces in the grain growth model is calculating the collisional velocity ...
Research on Turbulence-Removal Optical Imaging Based on Multi-Scale GAN and Sequential Images
Research on Turbulence-Removal Optical Imaging Based on Multi-Scale GAN and Sequential Images
The interference of atmospheric turbulence in the light transmission process can lead to geometric distortions and spatial blurring in images captured by optical imaging systems, s...
Research on Turbulence-Removal Optical Imaging Based on Multi-Scale GAN and Sequential Images
Research on Turbulence-Removal Optical Imaging Based on Multi-Scale GAN and Sequential Images
The interference of atmospheric turbulence in the light transmission process can lead to geometric distortions and spatial blurring in images captured by optical imaging systems, s...
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Unraveling the lidar-turbulence paradox
Unraveling the lidar-turbulence paradox
The meteorological community, and in particular the wind energy community, have been trying to establish a methodology to correct/convert turbulence measures derived from measureme...
Single-image Shape and from Shading with Atmospheric Correction for Precise Topographic Reconstruction on Mars
Single-image Shape and from Shading with Atmospheric Correction for Precise Topographic Reconstruction on Mars
. Introduction Accurate and high-resolution digital elevation models (DEMs) are essential for Martian landing site selection and geological analysis [1]. However, existing photogra...

