Numerical Simulation Of Optical Wave Propagation With Examples In Matlab
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Author |
: Jason Daniel Schmidt |
Publisher |
: Society of Photo Optical |
Total Pages |
: 196 |
Release |
: 2010 |
ISBN-10 |
: 0819483265 |
ISBN-13 |
: 9780819483263 |
Rating |
: 4/5 (65 Downloads) |
Synopsis Numerical Simulation of Optical Wave Propagation with Examples in MATLAB by : Jason Daniel Schmidt
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.
Author |
: Ting-chung Poon |
Publisher |
: World Scientific Publishing Company |
Total Pages |
: 324 |
Release |
: 2017-10-10 |
ISBN-10 |
: 9789813100039 |
ISBN-13 |
: 9813100036 |
Rating |
: 4/5 (39 Downloads) |
Synopsis Engineering Optics With Matlab® (Second Edition) by : Ting-chung Poon
This invaluable second edition provides more in-depth discussions and examples in various chapters. Based largely on the authors' own in-class lectures as well as research in the area, the comprehensive textbook serves two purposes. The first introduces some traditional topics such as matrix formalism of geometrical optics, wave propagation and diffraction, and some fundamental background on Fourier optics. The second presents the essentials of acousto-optics and electro-optics, and provides the students with experience in modeling the theory and applications using a commonly used software tool MATLAB®.
Author |
: Gokhan Apaydin |
Publisher |
: John Wiley & Sons |
Total Pages |
: 167 |
Release |
: 2017-10-16 |
ISBN-10 |
: 9781119432111 |
ISBN-13 |
: 1119432111 |
Rating |
: 4/5 (11 Downloads) |
Synopsis Radio Wave Propagation and Parabolic Equation Modeling by : Gokhan Apaydin
An important contribution to the literature that introduces powerful new methods for modeling and simulating radio wave propagation A thorough understanding of electromagnetic wave propagation is fundamental to the development of sophisticated communication and detection technologies. The powerful numerical methods described in this book represent a major step forward in our ability to accurately model electromagnetic wave propagation in order to establish and maintain reliable communication links, to detect targets in radar systems, and to maintain robust mobile phone and broadcasting networks. The first new book on guided wave propagation modeling and simulation to appear in nearly two decades, Radio Wave Propagation and Parabolic Equation Modeling addresses the fundamentals of electromagnetic wave propagation generally, with a specific focus on radio wave propagation through various media. The authors explore an array of new applications, and detail various virtual electromagnetic tools for solving several frequent electromagnetic propagation problems. All of the methods described are presented within the context of real-world scenarios typifying the differing effects of various environments on radio-wave propagation. This valuable text: Addresses groundwave and surface wave propagation Explains radar applications in terms of parabolic equation modeling and simulation approaches Introduces several simple and sophisticated MATLAB scripts Teaches applications that work with a wide range of electromagnetic, acoustic and optical wave propagation modeling Presents the material in a quick-reference format ideal for busy researchers and engineers Radio Wave Propagation and Parabolic Equation Modeling is a critical resource forelectrical, electronics, communication, and computer engineers working on industrial and military applications that rely on the directed propagation of radio waves. It is also a useful reference for advanced engineering students and academic researchers.
Author |
: Jim Bernard Breckinridge |
Publisher |
: SPIE-International Society for Optical Engineering |
Total Pages |
: 232 |
Release |
: 2011 |
ISBN-10 |
: 0819482048 |
ISBN-13 |
: 9780819482044 |
Rating |
: 4/5 (48 Downloads) |
Synopsis Computational Fourier Optics by : Jim Bernard Breckinridge
Computational Fourier Optics is a text that shows the reader in a tutorial form how to implement Fourier optical theory and analytic methods on the computer. A primary objective is to give students of Fourier optics the capability of programming their own basic wave optic beam propagations and imaging simulations. The book will also be of interest to professional engineers and physicists learning Fourier optics simulation techniques-either as a self-study text or a text for a short course. For more advanced study, the latter chapters and appendices provide methods and examples for modeling beams and pupil functions with more complicated structure, aberrations, and partial coherence. For a student in a course on Fourier optics, this book is a concise, accessible, and practical companion to any of several excellent textbooks on Fourier optical theory.
Author |
: Gökhan Apaydin |
Publisher |
: Artech House |
Total Pages |
: 364 |
Release |
: 2021-02-28 |
ISBN-10 |
: 9781630817800 |
ISBN-13 |
: 1630817805 |
Rating |
: 4/5 (00 Downloads) |
Synopsis Electromagnetic Diffraction Modeling and Simulation with MATLAB by : Gökhan Apaydin
This exciting new resource presents a comprehensive introduction to the fundamentals of diffraction of two-dimensional canonical structures, including wedge, strip, and triangular cylinder with different boundary conditions. Maxwell equations are discussed, along with wave equation and scattered, diffracted and fringe fields. Geometric optics, as well as the geometric theory of diffraction are explained. With MATLAB scripts included for several well-known electromagnetic diffraction problems, this book discusses diffraction fundamentals of two-dimensional structures with different boundary conditions and analytical numerical methods that are used to show diffraction. The book introduces fundamental concepts of electromagnetic problems, identities, and definitions for diffraction modeling. Basic coordinate systems, boundary conditions, wave equation, and Green’s function problem are given. The scattered fields, diffracted fields, and fringe fields, radar cross section for diffraction modeling are presented. Behaviors of electromagnetic waves around the two-dimensional canonical wedge and canonical strip are also explored. Diffraction of trilateral cylinders and wedges with rounded edges is investigated as well as double tip diffraction using Finite Difference Time Domain and Method of Moments. A MATLAB based virtual tool, developed with graphical user interface (GUI), for the visualization of both fringe currents and fringe waves is included, using numerical FDTD and MoM algorithm and High-Frequency Asymptotics approaches.
Author |
: Karl Dieter Moeller |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 459 |
Release |
: 2007-08-08 |
ISBN-10 |
: 9780387261683 |
ISBN-13 |
: 0387261680 |
Rating |
: 4/5 (83 Downloads) |
Synopsis Optics by : Karl Dieter Moeller
This new edition is intended for a one semester course in optics for juniors and seniors in science and engineering. It uses scripts from Maple, MathCad, Mathematica, and MATLAB to provide a simulated laboratory where students can learn by exploration and discovery instead of passive absorption. The text covers all the standard topics of a traditional optics course. It contains step by step derivations of all basic formulas in geometrical, wave and Fourier optics. The threefold arrangement of text, applications, and files makes the book suitable for "self-learning" by scientists or engineers who would like to refresh their knowledge of optics.
Author |
: Cleve B. Moler |
Publisher |
: SIAM |
Total Pages |
: 340 |
Release |
: 2010-08-12 |
ISBN-10 |
: 9780898716603 |
ISBN-13 |
: 0898716608 |
Rating |
: 4/5 (03 Downloads) |
Synopsis Numerical Computing with MATLAB by : Cleve B. Moler
A revised textbook for introductory courses in numerical methods, MATLAB and technical computing, which emphasises the use of mathematical software.
Author |
: Markus Osterhoff |
Publisher |
: Universitätsverlag Göttingen |
Total Pages |
: 167 |
Release |
: 2012 |
ISBN-10 |
: 9783863950545 |
ISBN-13 |
: 3863950542 |
Rating |
: 4/5 (45 Downloads) |
Synopsis Wave Optical Simulations of X-ray Nano-focusing Optics by : Markus Osterhoff
Curved x-ray multilayer mirrors focus synchrotron beams down to tens of nano metres. A wave-optical theory describing propagation of two waves in an elliptically curved focusing multilayer mirror is developed in this thesis. Using numerical integration, the layer shapes can be optimised for reflectivity and aberrations. Within this framework, performance of both existing and currently upgraded synchrotron beamlines is simulated. Using a more theoretical model case, limits of the theory are studied. A significant part of this work is dedicated to partial spatial coherence, modelled using the method of stochastic superpositions. Coherence propagation and filtering by x-ray waveguides is shown analytically and numerically. This comprehensive model is put forward that shall help in development and testing of new algorithms for a variety of imaging techniques using coherent x-ray beams. Advanced simulations accounting for real structure effects are compared to experimental data obtained at the GINIX instrument at the coherence beamline P10 at PETRA III, DESY. This thesis presents results of a collaboration between the Georg-August-Universität Göttingen and the European Synchrotron Radiation Facility (ESRF) Grenoble.
Author |
: Marek S. Wartak |
Publisher |
: Cambridge University Press |
Total Pages |
: 467 |
Release |
: 2013-01-10 |
ISBN-10 |
: 9781139851404 |
ISBN-13 |
: 1139851403 |
Rating |
: 4/5 (04 Downloads) |
Synopsis Computational Photonics by : Marek S. Wartak
A comprehensive manual on the efficient modeling and analysis of photonic devices through building numerical codes, this book provides graduate students and researchers with the theoretical background and MATLAB programs necessary for them to start their own numerical experiments. Beginning by summarizing topics in optics and electromagnetism, the book discusses optical planar waveguides, linear optical fiber, the propagation of linear pulses, laser diodes, optical amplifiers, optical receivers, finite-difference time-domain method, beam propagation method and some wavelength division devices, solitons, solar cells and metamaterials. Assuming only a basic knowledge of physics and numerical methods, the book is ideal for engineers, physicists and practising scientists. It concentrates on the operating principles of optical devices, as well as the models and numerical methods used to describe them.
Author |
: Fethallah Karim |
Publisher |
: Cambridge Scholars Publishing |
Total Pages |
: 578 |
Release |
: 2018-11-07 |
ISBN-10 |
: 9781527521193 |
ISBN-13 |
: 1527521192 |
Rating |
: 4/5 (93 Downloads) |
Synopsis Full Matlab Code for Synthesis and Optimization of Bragg Gratings by : Fethallah Karim
This book presents a theoretical description of fiber Bragg gratings, focusing on channels’ densification and the tunability of Bragg filters. It also includes a full Matlab code for the synthesis and optimization of several kinds of fiber Bragg gratings by using the directed tabu search, the simulated annealing method and the genetic algorithm. Physical and optical parameters of uniform, chirped and sampled fiber Bragg gratings are then reconstructed with these algorithms.