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Analysis of nonlinear elastic scattering of light from a microdroplet.

Authors :
Ng, Chiu-king.
Chinese University of Hong Kong Graduate School. Division of Physics.
Ng, Chiu-king.
Chinese University of Hong Kong Graduate School. Division of Physics.
Publication Year :
1994

Abstract

by Ng Chiu-king.<br />Title also in Chinese characters.<br />Thesis (Ph.D.)--Chinese University of Hong Kong, 1994.<br />Includes bibliographical references (leaves 189-195).<br />ACKNOWLEDGEMENTS --- p.v<br />p.vi<br />Chapter CHAPTER 1 --- INTRODUCTION --- p.1<br />Chapter CHAPTER 2 --- STANDARD MIE SCATTERING AND MORPHOLOGY DEPENDENT RESONANCES --- p.5<br />Chapter 2.1 --- General Descriptions --- p.6<br />Chapter 2.1.1 --- Nonresonant Scattering --- p.13<br />Chapter 2.1.1.1 --- Internal Intensity --- p.13<br />Chapter 2.1.1.2 --- Understanding in Terms of Geometric Optics --- p.14<br />Chapter 2.1.2 --- Resonances --- p.19<br />Chapter 2.1.2.1 --- Q-factor --- p.23<br />Chapter 2.1.2.2 --- Internal Intensity --- p.25<br />Chapter 2.1.2.3 --- Understanding in Terms of Geometric Optics --- p.28<br />Chapter 2.2 --- Theories --- p.31<br />Chapter 2.2.1 --- Nonresonances --- p.31<br />Chapter 2.2.2 --- Resonances --- p.32<br />Chapter 2.2.2.1 --- TE Mode in Lorentzian Form --- p.32<br />Chapter 2.2.2.2 --- Degradation due to Absorption --- p.35<br />Chapter 2.2.3 --- Response to a Pulse --- p.37<br />Chapter 2.2.3.1 --- Nonresonant Modes --- p.38<br />Chapter 2.2.3.2 --- Resonant Modes --- p.39<br />Chapter CHAPTER 3 --- NONLINEAR MIE SCATTERING AND THE PROPOSED MECHANISMS --- p.42<br />Chapter 3.1 --- NRL Experiment --- p.42<br />Chapter 3.1.1 --- Observations --- p.42<br />Chapter 3.1.2 --- Parameters --- p.43<br />Chapter 3.1.3 --- Evidence of Q Degradation --- p.45<br />Chapter 3.2 --- Proposed Mechanisms --- p.49<br />Chapter 3.2.1 --- Volume Perturbation due to electrostrictively Generated Acoustic Waves --- p.50<br />Chapter 3.2.2 --- Surface Perturbation due to Shape Distortion --- p.50<br />Chapter 3.2.3 --- Stimulated Brillouin Scattering --- p.51<br />Chapter 3.2.4 --- Bubbles Formation --- p.52<br />Chapter 3.3 --- Envelope Fluctuation --- p.53<br />Chapter CHAPTER 4 --- ELECTROSTRICTION AND THE PERTURBATION THEORY OF THE LINEWIDTH --- p.55<br />Chapter 4.1 --- Electrostriction --- p.55<br />Chapter 4.2 --- Perturbation of the Linewidth --- p.42<br />Chapter 4.2.1 --- Theory --- p.58<br />Chapter 4.2.2 --- Remarks --- p.60<br />Chapter CHAPTER 5 --- ELECTROSTRICTIVELY GENERATED ACOUSTIC VIBRATIONS --- p.64<br />Chapter 5.1 --- Estimate of Density Change --- p.64<br />Chapter 5.2 --- Pressure Disturbances --- p.65<br />Chapter 5.3 --- Electrostrictively Coupled Coefficients --- p.67<br />Chapter 5.4 --- Validity of Impulse Approach --- p.70<br />Chapter 5.5 --- An Expedient Model --- p.71<br />Chapter 5.5.1 --- Fractional Change in Density --- p.73<br />Chapter 5.5.2 --- Q Degradation --- p.81<br />Chapter 5.6 --- Exact Result --- p.88<br />Chapter 5.7 --- Nonimpulse Approach to Resonant Mode --- p.89<br />Chapter 5.7.1 --- Results --- p.91<br />Chapter 5.8 --- Chapter Conclusion --- p.93<br />Chapter CHAPTER 6 --- LOW-FREQUENCY SURFACE OSCILLATIONS --- p.94<br />Chapter 6.1 --- Surface Bulging --- p.95<br />Chapter 6.1.1 --- Equation of Motion --- p.97<br />Chapter 6.1.2 --- Results --- p.100<br />Chapter 6.1.3 --- Justification of Incompressibi1ity --- p.109<br />Chapter 6.2 --- Q Degradation --- p.110<br />Chapter 6.2.1 --- Experimental Situation --- p.111<br />Chapter 6.2.1.1 --- Single Pulse --- p.114<br />Chapter 6.2.1.2 --- Pulse Train --- p.116<br />Chapter 6.2.2 --- Hypothetical Bulging --- p.119<br />Chapter 6.3 --- Further Investigations --- p.123<br />Chapter 6.4 --- Chapter Conclusion --- p.130<br />Chapter CHAPTER 7 --- STIMULATED BRILLOUIN SCATTERING --- p.131<br />Chapter 7.1 --- General Descriptions --- p.132<br />Chapter 7.1.1 --- Resonant SBS --- p.133<br />Chapter 7.1.2 --- One Gain Mode --- p.136<br />Chapter 7.2 --- SBS Pressure Disturbances --- p.137<br />Chapter 7.3 --- Pulse Train --- p.140<br />Chapter 7.3.1 --- Necessity of Projection --- p.141<br />Chapter 7.3.2 --- Amplitude of Projected Mode --- p.143<br />Chapter 7.4 --- Results --- p.145<br />Chapter 7.5 --- Remarks --- p.150<br />Chapter 7.6 --- Chapter Conclusion --- p.155<br />Chapter CHAPTER 8 --- BUBBLE FORMATION --- p.156<br />Chapter 8.1 --- Degradation due to Cavitations --- p.157<br />Chapter 8.2 --- Coalescence of Gas Bubbles --- p.159<br />Chapter 8.3 --- Acoustic Cavitation --- p.161<br />Chapter 8.4 --- Chapter Conclusion --- p.165<br />Chapter CHAPTER 9 --- CONCLUSION AND DISCUSSION --- p.166<br />APPENDIX A --- p.170<br />APPENDIX B --- p.175<br />APPENDIX C --- p.180<br />APPENDIX D --- p.184<br />APPENDIX E --- p.187<br />REFERENCES --- p.189<br />http://library.cuhk.edu.hk/record=b5888163<br />Use of this resource is governed by the terms and conditions of the Creative Commons “Attribution-NonCommercial-NoDerivatives 4.0 International” License (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Details

Database :
OAIster
Notes :
print, vi, 195 leaves : ill. ; 30 cm., English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn959215360
Document Type :
Electronic Resource