
Modeling and Analysis of Transient Processes in Open Resonant Structures : New Methods and Techniques
New Methods and Techniques
By: Yuriy K. Sirenko, Staffan Ström, Nataliya P. Yashina
Hardcover | 1 November 2006
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368 Pages
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Preface | p. V |
Numerical Analysis of Transient Processes: Fundamental Results of the Theory, Methods, and Problems | p. 1 |
Introduction | p. 1 |
Main Equations and Fundamental Results of the Theory | p. 2 |
Maxwell Equations | p. 2 |
Wave and Telegraph Equations | p. 4 |
The Borgnis Functions | p. 6 |
Domains of Analysis, Boundary, and Initial Conditions | p. 8 |
Formulation of Initial Boundary Value Problems: Generalized Functions and Generalized Solutions | p. 10 |
Fundamental Results of the Theory | p. 14 |
Methods of Solving Initial Boundary Problems on the Basis of Spatio-Frequency Representations | p. 17 |
The Laplace and Fourier Integral Transformation Methods | p. 17 |
Natural Resonances and the Singularity Expansion Method | p. 21 |
Time-Domain Methods | p. 24 |
The Finite-Difference Method | p. 24 |
The Integral Equation Method | p. 30 |
The Directional Decomposition Method (Also Called the Invariant Imbedding or the Wave-Splitting Method) | p. 33 |
The Method of Separation of Variables and Other Analytic Methods | p. 35 |
Waveguides and Periodic Structures: Exact Absorbing Conditions on Virtual Boundaries in Cross-Section of Regular Waveguiding Structures | p. 38 |
Introduction | p. 38 |
Compact Waveguide Units: 2-D Scalar Problems in Cartesian Coordinates | p. 40 |
Transformation of the Evolutionary Basis for a Signal in a Regular Plane-Parallel Waveguide | p. 40 |
Nonlocal Absorbing Conditions | p. 43 |
Local Absorbing Conditions | p. 46 |
Axially Symmetrical Waveguide Units: 2-D Scalar Problems in Cylindrical Coordinates | p. 49 |
Statement of Model Initial Boundary Value Problems and Their General Solutions | p. 49 |
Exact Absorbing Conditions | p. 52 |
Vector Problems of the Theory of Open Waveguide Resonators | p. 54 |
General Theoretical Questions | p. 54 |
Exact Absorbing Conditions in Vector Initial Boundary Value Problems | p. 58 |
Problems of the Electromagnetic Theory of Gratings | p. 60 |
Scalar Problems for a Perfect Reflecting Grating | p. 60 |
The Transport Operator Specifying Spatio-Temporal Signal Transformations in the Floquet Channel and Exact Conditions for Outgoing Waves | p. 62 |
The Conditions Truncating the Analysis Domain in Vector Problems of the Electromagnetic Theory of Gratings | p. 65 |
Compact Inhomogeneities in Free Space: Virtual Coordinate Boundaries in Scalar and Vector Problems of Wave Scattering Theory | p. 69 |
Introduction | p. 69 |
Exact Conditions for Artificial Boundaries in Cylindrical (Polar) Coordinates | p. 71 |
Transformation of the Evolutionary Basis for a Diverging Cylindrical Wave | p. 71 |
Radiation Conditions and Nonlocal Absorbing Conditions | p. 73 |
Exact Conditions for Artificial Boundaries in Cartesian Coordinates: The Problem of Comer Points and Its Solution | p. 74 |
Truncation of the Analysis Domain Down to a Band in the Plane of the Variables g = {y, z} | p. 74 |
The Comer Points: Correct Formulation of the Inner Initial Boundary Value Problems in the Exact Local Absorbing Conditions | p. 77 |
Vector Problems: Spherical Coordinates | p. 81 |
Statement of the Problems and Preliminary Derivations | p. 81 |
Nonlocal Radiation Conditions for the Borgnis Functions | p. 85 |
Exact Radiation Conditions for the Components of the Electric Field Vector | p. 91 |
Axially Symmetric Problems: Spherical and Cylindrical Coordinates | p. 93 |
Formulation of the Initial Boundary Value Problems and Some General Statements | p. 93 |
Exact Radiation Conditions for the Artificial Spherical Boundary | p. 95 |
Some Peculiarities Arising in Implementation of Exact Absorbing Conditions in a Rectangular Grid of Coordinates g = {[rho], z} | p. 97 |
The Simplest Modifications of the Exact ABCs Approach and the Associated Numerical Tests | p. 99 |
Introduction | p. 99 |
Radiators with Infinite Flanges | p. 102 |
Statement of the Initial Boundary Value Problems | p. 102 |
Exact Absorbing Conditions in the Radiation Zone of an Axially Symmetric Structure | p. 103 |
Exact Absorbing Conditions in Cross-Sections of the Feeding Waveguides | p. 105 |
Wave Radiation from a Plane-Parallel Waveguide of Arbitrary Aperture | p. 107 |
Truncation of the Analysis Domain Down to a Half-Plane and a Band | p. 107 |
The Problem of the Corner Points and the Exact Absorbing Conditions on a Rectangular Coordinate Boundary | p. 111 |
Conditions for the Artificial Boundary L in the Cross-Section of a Plane-Parallel Waveguide | p. 113 |
The Problems of Strong and Remote Field Sources | p. 114 |
Waveguide Open Resonators: 2-D Scalar Problems | p. 115 |
Compact Discontinuities in R[superscript 2] Space: Formulation of Modified Problems in Terms of Secondary Field U[superscript s] (g, t) | p. 118 |
Determination of the Given Sources Field | p. 120 |
Evolutionary Basis of Outgoing Waves in the Domains [subscript L]Q with Homogeneous and Inhomogeneous Filling | p. 123 |
Numerical Tests of the New Exact Conditions | p. 127 |
A Finite-Difference Scheme with Exact ABCs at the Coordinate Boundary in the Floquet Channel | p. 127 |
A Finite-Difference Scheme with Exact ABCs for 2-D Problems in Polar Coordinate Systems | p. 136 |
Absorbing Conditions on the Boundaries with Corner Points | p. 140 |
Spherical Conditions in Axially Symmetric Problems | p. 143 |
Transform Operators in Space of Signal's Evolutionary Basis: A Time-Domain Analogue of the Generalized Scattering-Matrix Method | p. 148 |
Introduction | p. 148 |
Evolutionary Signal Basis and Transform Operators | p. 149 |
The Field of Given Sources in Hollow Waveguide of Arbitrary Cross-Section | p. 149 |
Key Statements | p. 152 |
Operator Method for Problems of Cascades of Elementary Discontinuities | p. 156 |
Canonical Problems of the Time Domain | p. 158 |
Formulation of the Problems | p. 159 |
Thin Diaphragms: Exact Solution of the Initial Boundary Value Problems by the Mode-Matching Method | p. 162 |
Residue Calculation Method and Analytical Regularization Method for Canonical Problems in the Time Domain | p. 166 |
Inhomogeneities Preserving Mode Structure of the Field | p. 169 |
Algorithms for Calculating Transient Characteristics of Resonant Inhomogeneities | p. 172 |
Signals in the Floquet Channel: The Transform Operators and Some Canonical Initial Boundary Value Problems | p. 175 |
The Basic Definitions | p. 175 |
Stripe Grating and a Grating of Thick Half-Planes: Solution of Initial Boundary Value Problems by Using the Mode-Matching Method | p. 177 |
Open Periodic Resonators and Waveguides: Novel Results in Electromagnetic Theory of Gratings | p. 181 |
Introduction | p. 181 |
Essential Qualitative Results in the Spectral Theory of Gratings | p. 182 |
Formulation of Boundary Value Problems and Principal Definitions | p. 182 |
Grating as an Open Periodic Resonator | p. 185 |
Grating as an Open Periodic Waveguide | p. 192 |
Natural Resonances and Transient Processes in Open Periodic Structures: Examples for Analysis | p. 198 |
Dynamic Patterns of Spectral Points in the Frequency Domain | p. 203 |
Specific Properties of the Dynamics of Elements of the Spectral Sets: Effects of Existence of Super-High-Q Oscillations and Surface Waves in Periodic Structures with Open Energy Radiation Channels | p. 203 |
Gallery of Anomalous Spatio-Frequency Transformations of Electromagnetic Field | p. 211 |
Gratings in Transient Wave Fields: Establishing of Regularities | p. 231 |
Scattering of Narrowband Signals: Dynamical Images of Spectral Points in the Time Domain | p. 231 |
Wideband Signal Scattering | p. 240 |
Visualization of Transient Fields: Reflecting Gratings | p. 244 |
Pulse Deformations by Free Propagation in Regular Sections of the Floquet Channels | p. 255 |
Deformation of Narrowband Signals | p. 256 |
Propagation and Deformation of Wideband Pulses | p. 264 |
Model Synthesis of Resonance Quasi-Optical Devices: Dispersive Open Resonators, Absorbing Coatings, and Pattern-Forming Structures | p. 270 |
Introduction | p. 270 |
Model Synthesis of Structures Including Grating Dispersive Elements (Frequency Domain) | p. 272 |
Optimization of the Absorbing Properties of Coatings | p. 272 |
Pattern-Forming Grating Structures | p. 278 |
Mode Selection in Open Resonators with Mirrors Made of Gratings | p. 282 |
Inverse Problems in Electromagnetic Theory of Gratings (Frequency Domain) | p. 287 |
General Statements | p. 287 |
Uniqueness Theorems | p. 290 |
Arbitrary Profile Reflective Grating: Visualization Problem | p. 293 |
Synthesis of Reflective Gratings | p. 301 |
Open Dispersive Resonators | p. 308 |
Open Resonators of Classical Configurations: Computational Experiments in the Time Domain | p. 309 |
Dispersive Open Resonators with Grating Mirrors | p. 316 |
Transient Processes in the Near Zone of Pulsed Waves Radiators | p. 324 |
The Luneburg Lens | p. 325 |
Radiation from Open Periodic Waveguides | p. 328 |
References | p. 334 |
List of Symbols and Abbreviations | p. 346 |
Index | p. 351 |
Table of Contents provided by Ingram. All Rights Reserved. |
ISBN: 9780387308784
ISBN-10: 0387308784
Series: Springer Series in Optical Sciences
Published: 1st November 2006
Format: Hardcover
Language: English
Number of Pages: 368
Audience: Professional and Scholarly
Publisher: Springer Nature B.V.
Country of Publication: US
Dimensions (cm): 23.39 x 15.6 x 2.06
Weight (kg): 0.66
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