General Theory of Light Propagation and Imaging Through the Atmosphere

General Theory of Light Propagation and Imaging Through the Atmosphere PDF Author: T. Stewart McKechnie
Publisher: Springer Nature
ISBN: 3030988287
Category : Science
Languages : en
Pages : 694

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Book Description
This 2nd edition lays out an updated version of the general theory of light propagation and imaging through Earth’s turbulent atmosphere initially developed in the late ‘70s and ‘80s, with additional applications in the areas of laser communications and high-energy laser beam propagation. New material includes a chapter providing a comprehensive mathematical tool set for precisely characterizing image formation with the anticipated Extremely Large Telescopes (ELTS), enabling a staggering range of star image shapes and sizes; existing chapters rewritten or modified so as to supplement the mathematics with clearer physical insight through written and graphical means; a history of the development of present-day understanding of light propagation and imaging through the atmosphere as represented by the general theory described. Beginning with the rudimentary, geometrical-optics based understanding of a century ago, it describes advances made in the 1960s, including the development of the ‘Kolmogorov theory,’ the deficiencies of which undermined its credibility, but not before it had done enormous damage, such as construction of a generation of underperforming ‘light bucket’ telescopes. The general theory requires no a priori turbulence assumptions. Instead, it provides means for calculating the turbulence properties directly from readily-measurable properties of star images.

General Theory of Light Propagation and Imaging Through the Atmosphere

General Theory of Light Propagation and Imaging Through the Atmosphere PDF Author: T. Stewart McKechnie
Publisher: Springer Nature
ISBN: 3030988287
Category : Science
Languages : en
Pages : 694

Get Book Here

Book Description
This 2nd edition lays out an updated version of the general theory of light propagation and imaging through Earth’s turbulent atmosphere initially developed in the late ‘70s and ‘80s, with additional applications in the areas of laser communications and high-energy laser beam propagation. New material includes a chapter providing a comprehensive mathematical tool set for precisely characterizing image formation with the anticipated Extremely Large Telescopes (ELTS), enabling a staggering range of star image shapes and sizes; existing chapters rewritten or modified so as to supplement the mathematics with clearer physical insight through written and graphical means; a history of the development of present-day understanding of light propagation and imaging through the atmosphere as represented by the general theory described. Beginning with the rudimentary, geometrical-optics based understanding of a century ago, it describes advances made in the 1960s, including the development of the ‘Kolmogorov theory,’ the deficiencies of which undermined its credibility, but not before it had done enormous damage, such as construction of a generation of underperforming ‘light bucket’ telescopes. The general theory requires no a priori turbulence assumptions. Instead, it provides means for calculating the turbulence properties directly from readily-measurable properties of star images.

Propagation and Imaging Through the Atmosphere

Propagation and Imaging Through the Atmosphere PDF Author:
Publisher:
ISBN:
Category : Aerosols
Languages : en
Pages : 218

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Book Description


Propagation and Imaging Through the Atmosphere II

Propagation and Imaging Through the Atmosphere II PDF Author: Luc R. Bissonnette
Publisher: Society of Photo Optical
ISBN: 9780819428882
Category : Technology & Engineering
Languages : en
Pages : 396

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Book Description
Topics of these papers, presented at the SPIE Annual Meeting, include: characterizing the propagation medium - maritime coastal environment; propagation modelling and experiments; electro-optic systems performance; and characterizing the propagation medium - general atmosphere.

Laser Beam Propagation in the Atmosphere

Laser Beam Propagation in the Atmosphere PDF Author: J. W. Strohbehn
Publisher: Springer
ISBN: 9783662311615
Category : Technology & Engineering
Languages : en
Pages : 328

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Book Description
With contributions by numerous experts

Optical Wave Propagation and Imaging in the Atmosphere

Optical Wave Propagation and Imaging in the Atmosphere PDF Author: Shuenn Jyi Wang
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description


Laser Beam Propagation in the Atmosphere

Laser Beam Propagation in the Atmosphere PDF Author: Hugo Weichel
Publisher: SPIE Press
ISBN: 9780819404879
Category : Science
Languages : en
Pages : 114

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Book Description


Propagation and Imaging Through the Atmosphere

Propagation and Imaging Through the Atmosphere PDF Author: Society of Photo-optical Instrumentation Engineers
Publisher: Society of Photo Optical
ISBN: 9780819425478
Category : Science
Languages : en
Pages : 458

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Book Description


Propagation and Imaging Through the Atmosphere IV

Propagation and Imaging Through the Atmosphere IV PDF Author: Michael C. Roggemann
Publisher: Society of Photo Optical
ISBN: 9780819437709
Category : Technology & Engineering
Languages : en
Pages : 200

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Book Description


Propagation and Imaging Through the Atmosphere III

Propagation and Imaging Through the Atmosphere III PDF Author: Michael C. Roggemann
Publisher: SPIE-International Society for Optical Engineering
ISBN: 9780819432490
Category : Science
Languages : en
Pages : 0

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Book Description


Field Guide to Atmospheric Optics

Field Guide to Atmospheric Optics PDF Author: Larry C. Andrews
Publisher: Society of Photo Optical
ISBN: 9780819453181
Category : Technology & Engineering
Languages : en
Pages : 96

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Book Description
The material in this Field Guide is a condensed version of similar material found in two textbooks: Laser Beam Propagation through Random Media (SPIE Vol. PM53) and Laser Beam Scintillation with Applications (SPIE Vol. PM99). Topics chosen for this concise presentation include a review of classical Kolmogorov turbulence theory, Gaussian-beam waves in free space, and atmospheric effects on a propagating optical wave. These atmospheric effects have great importance in a variety of applications like imaging, free space optical communications, laser radar, and remote sensing. This Guide presents tractable mathematical models from which the practitioner can readily determine beam spreading, beam wander, spatial coherence radius (Fried's parameter), angle of arrival fluctuations, scintillation, aperture averaging effects, fade probabilities, bit error-rates, and enhanced backscatter effects, among others.