Book contents
- Frontmatter
- Contents
- Preface
- Acknowledgements
- Part I Electromagnetic Theory in the Optical Domain
- Part II Geometrical Theory of Optical Imaging
- 4 Foundations of Geometrical Optics
- 5 Aberration Analysis of Optical Systems
- 6 Analytic Design and Optimisation of Optical Systems
- 7 Design Methods for Optical Imaging Systems
- Part III Diffraction Theory of Optical Imaging
- Appendix A Fourier Analysis, Complex Notation and Vector Formulas
- Appendix B Phase and Group Velocity of a Wave Packet
- Appendix C The Kramers–Kronig Dispersion Relations
- Appendix D Zernike Polynomials
- Appendix E Magnetically Induced Optical Rotation (Faraday Effect)
- Appendix F Vector Point-spread Function in a Multilayer Structure
- Appendix G V. S. Ignatowsky: Diffraction by a Lens of Arbitrary Aperture
- References
- Author Index
- Subject Index
4 - Foundations of Geometrical Optics
from Part II - Geometrical Theory of Optical Imaging
Published online by Cambridge University Press: 22 April 2019
- Frontmatter
- Contents
- Preface
- Acknowledgements
- Part I Electromagnetic Theory in the Optical Domain
- Part II Geometrical Theory of Optical Imaging
- 4 Foundations of Geometrical Optics
- 5 Aberration Analysis of Optical Systems
- 6 Analytic Design and Optimisation of Optical Systems
- 7 Design Methods for Optical Imaging Systems
- Part III Diffraction Theory of Optical Imaging
- Appendix A Fourier Analysis, Complex Notation and Vector Formulas
- Appendix B Phase and Group Velocity of a Wave Packet
- Appendix C The Kramers–Kronig Dispersion Relations
- Appendix D Zernike Polynomials
- Appendix E Magnetically Induced Optical Rotation (Faraday Effect)
- Appendix F Vector Point-spread Function in a Multilayer Structure
- Appendix G V. S. Ignatowsky: Diffraction by a Lens of Arbitrary Aperture
- References
- Author Index
- Subject Index
Summary
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- Chapter
- Information
- Imaging Optics , pp. 191 - 265Publisher: Cambridge University PressPrint publication year: 2019