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Scientific Principles and Technique of Optical Fabrication Processes

✍ Scribed by Maria Emilova Velinova (editor)


Publisher
Arcler Press
Year
2019
Tongue
English
Leaves
410
Category
Library

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✦ Synopsis


Scientific Principles and Technique of Optical Fabrication Processes deals with the scientific principles involved in the process of optical fabrication. It includes design and fabrication of fiber-optic nanoprobes for optical sensing, development of materials for next generation optical fiber and research progress of optical fabrication and surface-microstructure modification of sic. This book also discusses about effects of process parameters on material removal in vibration-assisted polishing of micro-optic mold, a review on methods for detection of subsurface damage, evaluation of the surface roughness based on acoustic emission signals in robot assisted polishing, laser damage resistance of polystyrene opal photonic crystals and impact of the polishing suspension concentration on laser damage of classically manufactured and plasma post-processed zinc crown glass surfaces.

✦ Table of Contents


Cover
Title Page
Copyright
DECLARATION
ABOUT THE EDITOR
TABLE OF CONTENTS
List of Contributors
List of Abbreviations
Preface
SECTION I: INTRODUCTION TO OPTICAL FABRICATION PROCESSES
Chapter 1 Design and Fabrication of Fiber-Optic Nanoprobes for Optical Sensing
Abstract
Introduction
Experimental Procedures
Results and Discussion
Conclusion
Acknowledgements
References
Chapter 2 Materials Development for Next Generation Optical Fiber
Abstract
Introduction
Results and Discussion
Experimental Section
Conclusions
Acknowledgments
Author Contribution
References
Chapter 3 Fabrication of Fresnel Plates on Optical Fibres By Fib Milling For Optical Trapping, Manipulation and Detection of Single Cells
Abstract
Introduction
Fabrication And Optical Characterization
Discussion
Discussion
Conclusions
References
Chapter 4 Review on Fabrication Technologies for Optical Mold Inserts
Abstract
Introduction
Fabrication Methods
Form-Giving Technologies
Micro-Structuring Technologies
Summary and Discussion
Author Contributions
References
SECTION II: SURFACE POLISHING PROCESSES
Chapter 5 Research Progress of Optical Fabrication and Surface-Microstructure Modification of SiC
Abstract
Introduction
Optical Fabrication of Silicon Carbide
Surface Modification
Conclusion
Acknowledgments
References
Chapter 6 Experimental Optimization of Annular Polishing Parameters for Silicon Carbide
Abstract
Introduction
Analytical Investigation of Annular Polishing
Annular Polishing Experiment of RB-SIC
Summary
Authors’ Contributions
Acknowledgments
References
Chapter 7 Effects of Process Parameters on Material Removal in Vibration-Assisted Polishing of Micro-Optic Mold
Abstract
Introduction
Experimental Setup and Conditions
Analysis of Pressure And Tool Wear Effects
Results and Discussions
Conclusions
Author Contributions
Acknowledgments
References
SECTION III: SUBSURFACE DAMAGES
Chapter 8 Methods for Detection of Subsurface Damage: A Review
Abstract
Introduction
Mechanisms of Subsurface Damage Formation
Destructive Methods
Non-Destructive Methods
Other Methods
Discussion
Summaries and Outlook
Authors’ Contributions
References
Chapter 9 Influence of Cutting Speed on Subsurface Damage Morphology and Distribution in Ground Fused Silica
Abstract
Introduction
Materials And Methods
Results
Discussion
Conclusions
Author Contributions
References
Chapter 10 Subsurface Damage in Polishing Process of Silicon Carbide Ceramic
Abstract
Introduction
Theoretical Analysis
Numerical Simulation
Validation of Experimental Results
Conclusions
Acknowledgments
Author Contributions
References
SECTION IV: SURFACE ROUGHNESS
Chapter 11 Surface Roughness Evaluation Based on Acoustic Emission Signals in Robot Assisted Polishing
Abstract
Introduction
Experimental Procedure
Results
Conclusions
Acknowledgments
Author Contributions
References
Chapter 12 Interfacial Surface Roughness Determination by Coherence Scanning Interferometry using Noise Compensation
Abstract
Introduction
Theory
Computer Simulation
Discussion
Conclusions
Acknowledgment
References
Chapter 13 Effect of Slurry Composition on the Chemical Mechanical Polishing of thin Diamond Films
Abstract
Introduction
Experimental Procedure
Results and Discussion
Conclusions
Acknowledgements
References
SECTION V: LASER DAMAGE RESISTANCE
Chapter 14 Laser Damage Resistance of Polystyrene Opal Photonic Crystals
Abstract
Introduction
Results and Discussion
Methods
Conclusions
References
Chapter 15 Surface Molecular Structure Defects And Laser-Induced Damage Threshold of Fused Silica During A Manufacturing Process
Abstract
Introduction
Results and Disscusion
Lidts
Conclusions
Methods
References
Chapter 16 Impact of the Polishing Suspension Concentration on Laser Damage of Classically Manufactured and Plasma Post-Processed Zinc Crown Glass Surfaces
Abstract
Introduction
Materials And Methods
Results
Discussion
Conclusions
Author Contributions
Acknowledgments
References
Index
Back Cover


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