Temporal evolution of the irrotational and solenoidal cavity modes

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info:eu-repo/semantics/closedAccess

Özet

An outline of the evolutionary approach to time-domain electromagnetics is presented in a compact form available for practical using. A cavity is loaded with a given source of transient signal. The cavity field is presented via expansions in terms of the solenoidal and irrotational modes having time-dependent modal amplitudes. The differential equations with time derivative are derived from Maxwell's equations for the amplitudes jointly with appropriate initial conditions. The frequency-domain theory usually interprets the irrotational modes as some static fields. Graphical results illustrating the time dependence of the irrotational and solenoidal modes will be exhibited in the presentation. © 2011 IEEE. © 2011 Elsevier B.V., All rights reserved.

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2011 30th URSI General Assembly and Scientific Symposium, URSIGASS 2011 -- Istanbul -- 87252

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Cavity field, Cavity mode, Electromagnetics, Evolutionary approach, Frequency domains, Initial conditions, Irrotational, Maxwell's equations, Static fields, Temporal evolution, Time dependence, Time derivative, Time domain, Time-dependent, Transient signal, Differential equations, Maxwell equations, Solenoids

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