Numerical Simulation of Optical Wave Propagation With Examples in MATLAB Jason D. Schmidt
9>r@wK'Pn g4^3H3Pd Description
<.=-9O6 PW+B&7{ Wave-optics simulation is an immensely useful tool for many applications. The simulation techniques in this book are directly applicable to atmospheric imaging, astronomy, adaptive optics, free-space optical communications, and LADAR. In addition, many of the basic techniques are applicable to integrated optics and nonlinear, anisotropic, and optically active media.
& ^;3S*p Ejj+%)n. Numerical Simulation of Optical Wave Propagation is solely dedicated to wave-optics simulations. The book discusses digital Fourier transforms (FT), FT-based operations, multiple methods of wave-optics simulations, sampling requirements, and simulations in atmospheric turbulence.
j:7AVnt p :zRgwcn This book will benefit optical scientists and engineers at all levels as a guide for FT-based data analysis, imaging system analysis, and wave-optics simulations. Professors can use this book to augment their Fourier optics courses and for independent studies with students. Problem sets are given at the end of each chapter. Students will learn principles and techniques from this book that can be utilized throughout their careers in optics.
&AnWMFo [Om,Q< Table of Contents
e=`=7H4P 7O,!67+^~ 1. Foundations of Scalar Diffraction Theory
6z2%/P-' 2. Digital Fourier Transforms
yJW/yt.l 3. Simple Computations Using Fourier Transforms
{gb` %J 4. Fraunhofer Diffraction and Lenses
sBa&]9>m 5. Imaging Systems and Aberrations
elz0t<V 6. Fresnel Diffraction in Vacuum
yX.; x 0 7. Sampling Requirements for Fresnel Diffraction
kD}vK+ 8. Relaxed Sampling Constraints with Partial Propagations
,olP} 9. Propagation through Atmospheric Turbulence
h_5CWQSi Appendix A: Function Definitions
Mc{-2 Appendix B: MATLAB Code Listings
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oSLm?Lu ]GBlads 附件出售:
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