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EM Wave Propagation Analysis in Plasma Covered Radar Absorbing Material / / by Hema Singh, Simy Antony, Harish Singh Rawat



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Autore: Singh Hema Visualizza persona
Titolo: EM Wave Propagation Analysis in Plasma Covered Radar Absorbing Material / / by Hema Singh, Simy Antony, Harish Singh Rawat Visualizza cluster
Pubblicazione: Singapore : , : Springer Singapore : , : Imprint : Springer, , 2017
Edizione: 1st ed. 2017.
Descrizione fisica: 1 online resource (58 p.)
Disciplina: 620
Soggetto topico: Microwaves
Optical engineering
Optics
Electrodynamics
Electronics
Microelectronics
Microwaves, RF and Optical Engineering
Classical Electrodynamics
Electronics and Microelectronics, Instrumentation
Persona (resp. second.): AntonySimy
RawatHarish Singh
Note generali: Includes index.
Nota di contenuto: Introduction -- Role of Plasma Parameters -- Formulation for EM Propagation in Plasma covered RAM -- Results and Discussion -- Conclusion -- References -- Subject Index.
Sommario/riassunto: This book focuses on EM propagation characteristics within multilayered plasma-dielectric-metallic media. The method used for analysis is impedance transformation method. Plasma covered radar absorbing material is approximated as a multi-layered dielectric medium. The plasma is considered to be bounded homogeneous/inhomogeneous medium. The reflection coefficient and hence return loss is analytically derived. The role of plasma parameters, such as electron density, collision frequency, plasma thickness, and plasma density profile in the absorption behavior of multi-layered plasma-RAM structure is described. This book provides a clearer picture of EM propagation within plasma. The reader will get an insight of plasma parameters that play significant role in deciding the absorption characteristics of plasma covered surfaces.
Titolo autorizzato: EM Wave Propagation Analysis in Plasma Covered Radar Absorbing Material  Visualizza cluster
ISBN: 981-10-2269-0
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910254345303321
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Serie: SpringerBriefs in Computational Electromagnetics, . 2365-6239