
High Power Microwave Sources and Technologies Using Metamaterials
- English
- ePUB (mobile friendly)
- Available on iOS & Android
High Power Microwave Sources and Technologies Using Metamaterials
About this book
Explore the latestresearchavenues in the field ofhigh-powermicrowave sources and metamaterials
A stand-alone follow-up to the highly successful High Power Microwave Sources andTechnologies, the new High Power Microwave Sources and Technologies Using Metamaterials, demonstrateshow metamaterialshave impacted the field ofhigh-powermicrowave sources and the new directions revealed by the latest research.It's written by a distinguished team of researchers in the areawho explore a new paradigm within which to consider the interaction of microwaves with material media.
Providing contributions from multiple institutions that discuss theoretical concepts as well as experimental results in slow wave structure design, this edited volumealso discusses how traditional periodic structures used since the 1940s and 1950s can have propertiesthat, until recently, were attributed to double negative metamaterial structures.
The book also includes:
- A thorough introduction to high power microwave oscillators and amplifiers, as well as how metamaterials can be introduced as slow wave structures and other components
- Comprehensive explorations of theoretical concepts in dispersion engineering for slow wave structure design, including multi-transmission line modelsandparticle-in-cell codevirtual prototyping models
- Practical discussions of experimentalmeasurements in dispersion engineering for slow wave structure design
- In-depth examinations of passive and active components, as well as the temporal evolution of electromagnetic fields
High Power Microwave Sources and Technologies Using Metamaterials isa perfect resourcefor graduate students and researchers in theareas ofnuclear and plasma sciences, microwaves, and antennas.
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Information
Table of contents
- Cover
- Table of Contents
- Series Page
- Title Page
- Copyright
- Editor Biographies
- List of Contributors
- Foreword
- Preface
- 1 Introduction and Overview of the Book
- 2 Multitransmission Line Model for Slow Wave Structures Interacting with Electron Beams and Multimode Synchronization
- 3 Generalized Pierce Model from the Lagrangian
- 4 Dispersion Engineering for Slow‐Wave Structure Design
- 5 Perturbation Analysis of Maxwell's Equations
- 6 Similarity of the Properties of Conventional Periodic Structures with Metamaterial Slow Wave Structures
- 7 Group Theory Approach for Designing MTM Structures for High‐Power Microwave Devices
- 8 Time‐Domain Behavior of the Evolution of Electromagnetic Fields in Metamaterial Structures
- 9 Metamaterial Survivability in the High‐Power Microwave Environment
- 10 Experimental Hot Test of Beam/Wave Interactions with Metamaterial Slow Wave Structures
- 11 Conclusions and Future Directions
- Index
- Series Page
- End User License Agreement