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Optical imaging and aberrations.. Pa...
~
Society of Photo-optical Instrumentation Engineers.
Optical imaging and aberrations.. Part 2,. Wave diffraction optics
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Optical imaging and aberrations./ Virendra N. Mahajan.
remainder title:
Wave diffraction optics
Author:
Mahajan, Virendra N.
Published:
Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA) :SPIE, : 2011.,
Description:
1 online resource (578 p.) :ill., digital file. :
Notes:
"SPIE Digital Library."--Website.
Subject:
Aberration. -
Online resource:
http://dx.doi.org/10.1117/3.898443
ISBN:
9780819487001 (electronic)
Optical imaging and aberrations.. Part 2,. Wave diffraction optics
Mahajan, Virendra N.
Optical imaging and aberrations.
Part 2,Wave diffraction optics[electronic resource] /Wave diffraction opticsVirendra N. Mahajan. - 2nd ed. - Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA) :SPIE,2011. - 1 online resource (578 p.) :ill., digital file. - Press monograph ;209. - SPIE Press monograph ;PM103..
"SPIE Digital Library."--Website.
Includes bibliographical references.
Preface to the first edition -- Acknowledgments -- Preface to the second edition -- Symbols and notation -- Chapter 1. Image formation -- Chapter 2. Optical systems with circular pupils -- Chapter 3. Optical systems with annular pupils -- Chapter 4. Optical systems with gaussian pupils -- Chapter 5. Random aberrations -- Bibliography -- References for additional reading -- Index.
Restricted to subscribers or individual electronic text purchasers.
Ten years have passed since the publication of the first edition of this classic text in April 2001. Considerable new material amounting to 100 pages has been added in this second edition. Each chapter now contains a Summary section at the end. The new material in Chapter 4 consists of a detailed comparison of Gaussian apodization with a corresponding beam, determination of the optimum value of the Gaussian radius relative to that of the pupil to yield maximum focal-point irradiance, detailed discussion of standard deviation, aberration balancing, and Strehl ratio for primary aberrations, derivation of the aberration-free and defocused OTF, discussion of an aberrated beam yielding higher axial irradiance in a certain defocused region than its aberration-free focal-point value, illustration that aberrated PSFs lose the advantage of Gaussian apodizaton in reducing the secondary maxima of a PSF, and a brief description of the characterization of the width of a multimode beam. In Chapter 5, the effect of random longitudinal defocus on a PSF is included. The coherence length of atmospheric turbulence is calculated for looking both up and down through the atmosphere. Also discussed are the angle of arrival of a light wave propagating through turbulence, and lucky imaging where better-quality short-exposure images are selected, aligned, and added to obtain a high-quality image.
Mode of access: World Wide Web.
ISBN: 9780819487001 (electronic)
Standard No.: 10.1117/3.898443doiSubjects--Topical Terms:
877205
Aberration.
Index Terms--Genre/Form:
554714
Electronic books.
LC Class. No.: QC671 / .M36 2011 pt.2e
Dewey Class. No.: 621.36
Optical imaging and aberrations.. Part 2,. Wave diffraction optics
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"SPIE Digital Library."--Website.
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Includes bibliographical references.
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Preface to the first edition -- Acknowledgments -- Preface to the second edition -- Symbols and notation -- Chapter 1. Image formation -- Chapter 2. Optical systems with circular pupils -- Chapter 3. Optical systems with annular pupils -- Chapter 4. Optical systems with gaussian pupils -- Chapter 5. Random aberrations -- Bibliography -- References for additional reading -- Index.
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Restricted to subscribers or individual electronic text purchasers.
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Ten years have passed since the publication of the first edition of this classic text in April 2001. Considerable new material amounting to 100 pages has been added in this second edition. Each chapter now contains a Summary section at the end. The new material in Chapter 4 consists of a detailed comparison of Gaussian apodization with a corresponding beam, determination of the optimum value of the Gaussian radius relative to that of the pupil to yield maximum focal-point irradiance, detailed discussion of standard deviation, aberration balancing, and Strehl ratio for primary aberrations, derivation of the aberration-free and defocused OTF, discussion of an aberrated beam yielding higher axial irradiance in a certain defocused region than its aberration-free focal-point value, illustration that aberrated PSFs lose the advantage of Gaussian apodizaton in reducing the secondary maxima of a PSF, and a brief description of the characterization of the width of a multimode beam. In Chapter 5, the effect of random longitudinal defocus on a PSF is included. The coherence length of atmospheric turbulence is calculated for looking both up and down through the atmosphere. Also discussed are the angle of arrival of a light wave propagating through turbulence, and lucky imaging where better-quality short-exposure images are selected, aligned, and added to obtain a high-quality image.
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Also available in print version.
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Mode of access: World Wide Web.
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System requirements: Adobe Acrobat Reader.
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Title from PDF title page (SPIE eBooks Website, viewed 2011-07-14).
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http://dx.doi.org/10.1117/3.898443
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