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Integrated optomechanical analysis
~
Michels, Gregory J.
Integrated optomechanical analysis
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Integrated optomechanical analysis/ Keith B. Doyle, Victor L. Genberg, Gregory J. Michels.
作者:
Doyle, Keith B.
其他作者:
Michels, Gregory J.
出版者:
Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA) :SPIE, : c2002.,
面頁冊數:
1 online resource (xiv, 231 p. : ill.) :digital file. :
附註:
"SPIE digital library."
標題:
Optical instruments - Design and construction. -
電子資源:
http://dx.doi.org/10.1117/3.460595
ISBN:
9780819478658 (electronic)
Integrated optomechanical analysis
Doyle, Keith B.
Integrated optomechanical analysis
[electronic resource] /Keith B. Doyle, Victor L. Genberg, Gregory J. Michels. - Bellingham, Wash. (1000 20th St. Bellingham WA 98225-6705 USA) :SPIE,c2002. - 1 online resource (xiv, 231 p. : ill.) :digital file. - Tutorial texts in optical engineering ;v. TT 58. - SPIE tutorial texts ;TT06..
"SPIE digital library."
Includes bibliographical references and index.
Introduction -- Chapter 1. Introduction to Mechanical Analysis Using Finite Elements -- 1.1 Integrated Optomechanical Analysis Issues -- 1.2 Elasticity Review -- 1.3 Basics of Finite Element Analysis -- 1.4 Symmetry in FE models -- 1.5 Stress Analysis -- 1.6 Vibrations -- 1.7 Model Checkout -- 1.8 Summary -- References --
Restricted to subscribers or individual electronic text purchasers.
This tutorial presents optomechanical modeling techniques to effectively design and analyze high-performance optical systems. It discusses thermal and structural modeling methods that use finite-element analysis to predict the integrity and performance of optical elements and optical support structures. Includes accompanying CD-ROM with examples.
System requirements: Adobe Acrobat Reader.
ISBN: 9780819478658 (electronic)
Standard No.: 10.1117/3.460595doiSubjects--Topical Terms:
596710
Optical instruments
--Design and construction.
LC Class. No.: TS513 / .D69 2002e
Dewey Class. No.: 681/.4
Integrated optomechanical analysis
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Introduction -- Chapter 1. Introduction to Mechanical Analysis Using Finite Elements -- 1.1 Integrated Optomechanical Analysis Issues -- 1.2 Elasticity Review -- 1.3 Basics of Finite Element Analysis -- 1.4 Symmetry in FE models -- 1.5 Stress Analysis -- 1.6 Vibrations -- 1.7 Model Checkout -- 1.8 Summary -- References --
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Chapter 2. Optical Basics and Zernike Polynomials -- 2.1 Electromagnetic Basics -- 2.2 Polarization -- 2.3 Rays, Wavefronts, and Wavefront Error -- 2.4 Image Quality and Optical Performance -- 2.5 Image Formation -- 2.6 Zernike Polynomials -- 2.7 Legendre-Fourier Polynomials -- 2.8 Aspheric and x-y Polynomials -- References --
505
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Chapter 3. Optomechanical Displacement Analysis Methods -- 3.1 Displacement Models of Optics. 3.2 Displacement Models of Adhesive Bonds. 3.3 Displacement Models of Flexures and Mounts -- 3.4 Displacement Analysis Methods -- References --
505
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$a
Chapter 4. Integration of Optomechanical Analyses -- 4.1 Optical Surface Positional Errors -- 4.2 Optical Surface Shape Changes -- 4.3 Line-of-Sight Jitter -- 4.4 Stress Birefringence -- 4.5 Mechanical Obscurations -- References --
505
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$a
Chapter 5 Optothermal Analysis Methods -- 5.1. Thermo-Elastic Analysis -- 5.2 Thermo-Optic Analysis -- 5.3 Effects of Temperature on Optical System Performance -- 5.4 Optical Design Software -- 5.5 Thermo-Optic Finite Element Models -- 5.6 Bulk Volumetric Absorption -- 5.7 Mapping of Temperature Fields from the Thermal Model to the Structural Model -- 5.8 Analogous Techniques -- References --
505
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$a
Chapter 6. Adaptive Optics Analysis Methods -- 6.1 Introduction -- 6.2 Method of Simulation -- 6.3 Coupled Adaptive Control Simulation and Structural Design Optimization -- References --
505
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Chapter 7. Optimization of Optomechanical Systems -- 7.1 Overview -- 7.2 Optimization Theory -- 7.3 Structural Optimization, Including Optical Measures -- 7.4 Integrated Thermal-Structural-Optical Optimization -- References --
505
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Chapter 8. Integrated Optomechanical Analysis of a Telescope -- 8.1 Overview -- 8.2 Optical Model Description -- 8.3 Structural Model Description -- 8.4 One-Gravity Static Performance -- 8.5 On-Orbit Image Motion Random Response -- 8.6 Optimizing PMA with Optical Measures -- 8.7 Adaptive PM -- 8.8 System-level Multidisciplinary Optimization -- References --
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Chapter 9. Integrated Optomechanical Analysis of a Lens Assembly -- 9.1 Overview -- 9.2 Thermal Analysis -- 9.3 Thermo-elastic Analysis -- 9.4 Stress Birefringence Analysis -- 9.5 Thermo-Optic Analysis -- 9.6 Optical Analysis -- Index.
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This tutorial presents optomechanical modeling techniques to effectively design and analyze high-performance optical systems. It discusses thermal and structural modeling methods that use finite-element analysis to predict the integrity and performance of optical elements and optical support structures. Includes accompanying CD-ROM with examples.
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http://dx.doi.org/10.1117/3.460595
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