Integrated Optomechanical Analysis 2nd Edition by Keith B Doyle, Victor L Genberg, Gregory J Michels – Ebook PDF Instant Download/Delivery: 0819492485, 9780819492487
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Product details:
ISBN 10: 0819492485
ISBN 13: 9780819492487
Author: Keith B Doyle, Victor L Genberg, Gregory J Michels
Integrated Optomechanical Analysis 2nd Table of contents:
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Chapter 1: Introduction to Integrated Optomechanical Analysis
- 1.1 Integrated Optomechanical Analysis Issues
- 1.2 Elasticity Review
- 1.3 Heat Transfer Review
- 1.4 Fracture Mechanics Review
- 1.5 Failure Theories
- 1.6 Introduction to Finite Element Modeling
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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 Pointing Error
- 2.5 Optical Aberrations
- 2.6 Image Quality and Optical Performance
- 2.7 Image Formation
- 2.8 Imaging System Fundamentals
- 2.9 Conic Surfaces
- 2.10 Optical Design Forms
- 2.11 Interferometry and Optical Testing
- 2.12 Mechanical Obscurations
- 2.13 Zernike Polynomials
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Chapter 3: Optomechanical Displacement Analysis Methods
- 3.1 Modeling of Optical Components
- 3.2 Modeling of Adhesive Bonds
- 3.3 Modeling of Surface Coatings
- 3.4 Displacement Analysis of Optical Components
- 3.5 Displacement Analysis of Optical Systems
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Chapter 4: Optical Surface Errors
- 4.1 Optical-Surface Positional Errors
- 4.2 Optical Surface Shape Changes
- 4.3 Image Degradation Due to Surface Errors
- 4.4 Finite-Element-Derived Spot Diagrams
- 4.5 Surface Error Budgeting
- 4.6 Error Mapping for Optimization
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Chapter 5: Optothermal Analysis Methods
- 5.1 Thermal-Elastic Analysis
- 5.2 Thermo-Optic Effects
- 5.3 First-Order Effects of Temperature on Optical System Performance
- 5.4 Bulk Absorbed Energy
- 5.5 Mapping Temperatures from the Thermal to Structural Model
- 5.6 Moisture and Adhesive Curing Effects
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Chapter 6: Modeling of Optical Mounts
- 6.1 Introduction
- 6.2 Displacement Models of Flexures and Mounts
- 6.3 Modeling of Kinematic Mounts
- 6.4 Modeling of Flexure Mounts
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Chapter 7: Structural Dynamics and Optics
- 7.1 Introduction
- 7.2 Free Vibration Analysis
- 7.3 Forced Vibration Analysis
- 7.4 Random Vibration Analysis
- 7.5 Shock Analysis
- 7.6 Acoustic Vibration Analysis
- 7.7 Integrated Dynamic Analysis
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Chapter 8: Mechanical Stress and Optics
- 8.1 Introduction
- 8.2 Stress and Strain in Optical Materials
- 8.3 Stress Birefringence
- 8.4 Fracture Mechanics of Optical Materials
- 8.5 Failure Analysis of Optical Systems
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Chapter 9: Analysis of Adaptive Optics
- 9.1 Introduction
- 9.2 Method of Simulation
- 9.3 Coupled Adaptive Control Simulation and Structural Design Optimization
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Chapter 10: Optimization of Optomechanical Systems
- 10.1 Optimization Approaches
- 10.2 Optimization Theory
- 10.3 Structural Optimization of Optical Performance
- 10.4 Integrated Thermal-Structural-Optical Optimization
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Chapter 11: Superelements in Optics
- 11.1 Introduction
- 11.2 Superelement Generation
- 11.3 Superelement Applications in Optomechanics
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Chapter 12: Integrated Optomechanical Analysis of a Telescope
- 12.1 Overview
- 12.2 Optical Model Description
- 12.3 Structural Model Description
- 12.4 One-Gravity Static Performance
- 12.5 On-Orbit Image Motion Random Response
- 12.6 Optimize PMA with Optical Measures
- 12.7 Adaptive PM
- 12.8 System-Level Multidisciplinary Optimization
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Chapter 13: Integrated Optomechanical Analysis of a Lens Assembly
- 13.1 Double Gauss Lens Assembly
- 13.2 Seven-Element Lens Assembly
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Tags: Keith B Doyle, Victor L Genberg, Gregory J Michels, Optomechanical