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Adaptive beaming and imaging in the ...
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Society of Photo-optical Instrumentation Engineers.
Adaptive beaming and imaging in the turbulent atmosphere
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Adaptive beaming and imaging in the turbulent atmosphere/ Vladimir P. Lukin, Boris V. Fortes ; translated by A.B. Malikova.
作者:
Lukin, V. P.
其他作者:
Fortes, Boris V.
出版者:
Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA) :SPIE, : c2002.,
面頁冊數:
1 online resource (xiv, 201 p. : ill.) :digital file. :
附註:
"SPIE digital library."
標題:
Laser beams - Atmospheric effects. -
電子資源:
http://dx.doi.org/10.1117/3.452443
ISBN:
9780819479150 (electronic)
Adaptive beaming and imaging in the turbulent atmosphere
Lukin, V. P.
Adaptive beaming and imaging in the turbulent atmosphere
[electronic resource] /Vladimir P. Lukin, Boris V. Fortes ; translated by A.B. Malikova. - Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA) :SPIE,c2002. - 1 online resource (xiv, 201 p. : ill.) :digital file. - SPIE Press monograph ;PM109. - SPIE Press monograph ;PM103..
"SPIE digital library."
Includes bibliographical references and index.
ch. 1. Mathematical simulation of laser beam propagation in the atmosphere -- 1.1. Numerical solution to problems of coherent radiation propagation -- 1.2. Generation of 2D random phase screens by the Fourier transform method -- 1.3. Dynamic simulation of the large-scale part of turbulent aberrations of an optical phase -- 1.4. Modification of the numerical model for partially coherent beams -- 1.5. Lens transformation of coordinates in an inhomogeneous wave equation -- ch. 2. Modeling an adaptive optics system -- 2.1. Reference wave in an adaptive optics system -- 2.2. Wavefront sensors -- 2.3. Wavefront correctors -- ch. 3. Adaptive imaging -- 3.1. Calculation and minimization of image distortions -- 3.2. Study of angular resolution and contrast in large residual wavefront distortions -- 3.3. Phase correction of turbulent distortions under strong intensity scintillation -- ch. 4. Minimization and phase correction of thermal blooming of high-power beams -- 4.1. Amplitude optimization for thermal blooming along a vertical path -- 4.2. Programmed modal phase correction of thermal blooming along a vertical path -- 4.3. Method of phase conjugation on a horizontal path -- 4.4. Modal phase conjugation on a horizontal path -- ch. 5. A laser reference beacon as a key element of an adaptive optics system -- 5.1. Some features of reflected optical wave fluctuations in a turbulent atmosphere -- 5.2. Improvement of the quality of an atmospheric image by adaptive optics methods -- 5.3. A modern concept of adaptive optics systems with a laser guide star -- 5.4. Monostatic and bistatic schemes for formation of a laser guide star -- 5.5. Hybrid scheme of forming a laser guide star -- 5.6. Two bistatic schemes for LGS formation -- 5.7. A new scheme for LGS formation -- Conclusion -- Index.
Restricted to subscribers or individual electronic text purchasers.
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.
Mode of access: World Wide Web.
ISBN: 9780819479150 (electronic)
Standard No.: 10.1117/3.452443doiSubjects--Topical Terms:
877221
Laser beams
--Atmospheric effects.Subjects--Index Terms:
Adaptive optics
LC Class. No.: QC976.L36 / L8513 2002
Dewey Class. No.: 621.36/9
Adaptive beaming and imaging in the turbulent atmosphere
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Vladimir P. Lukin, Boris V. Fortes ; translated by A.B. Malikova.
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Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA) :
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ch. 1. Mathematical simulation of laser beam propagation in the atmosphere -- 1.1. Numerical solution to problems of coherent radiation propagation -- 1.2. Generation of 2D random phase screens by the Fourier transform method -- 1.3. Dynamic simulation of the large-scale part of turbulent aberrations of an optical phase -- 1.4. Modification of the numerical model for partially coherent beams -- 1.5. Lens transformation of coordinates in an inhomogeneous wave equation -- ch. 2. Modeling an adaptive optics system -- 2.1. Reference wave in an adaptive optics system -- 2.2. Wavefront sensors -- 2.3. Wavefront correctors -- ch. 3. Adaptive imaging -- 3.1. Calculation and minimization of image distortions -- 3.2. Study of angular resolution and contrast in large residual wavefront distortions -- 3.3. Phase correction of turbulent distortions under strong intensity scintillation -- ch. 4. Minimization and phase correction of thermal blooming of high-power beams -- 4.1. Amplitude optimization for thermal blooming along a vertical path -- 4.2. Programmed modal phase correction of thermal blooming along a vertical path -- 4.3. Method of phase conjugation on a horizontal path -- 4.4. Modal phase conjugation on a horizontal path -- ch. 5. A laser reference beacon as a key element of an adaptive optics system -- 5.1. Some features of reflected optical wave fluctuations in a turbulent atmosphere -- 5.2. Improvement of the quality of an atmospheric image by adaptive optics methods -- 5.3. A modern concept of adaptive optics systems with a laser guide star -- 5.4. Monostatic and bistatic schemes for formation of a laser guide star -- 5.5. Hybrid scheme of forming a laser guide star -- 5.6. Two bistatic schemes for LGS formation -- 5.7. A new scheme for LGS formation -- Conclusion -- Index.
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http://dx.doi.org/10.1117/3.452443
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