Conference Article

·2022

Time Domain Scattering of Waves from Perfectly Conducting Half-Plane in Dispersive Space: Field-State Approach

T. Şengör YTU

2022 3rd URSI Atlantic and Asia Pacific Radio Science Meeting (AT-AP-RASC)

Abstract

The time domain scattering of electromagnetic waves is studied by using the concept and solution techniques related to state equations in system theory. The concepts and solution techniques related to state equations in system theory are supported with suitable extensions and modifications for the case of inclusion of dispersive materials. The state space model of system theory is extended and applied to the scattering of transient waves from half-planes where the filling dielectric is considered as Debye material. The perfectly conducting half-plane embedded in an infinitely large and homogeneous Debye material. The transient waves are studied.

Keywords

Scattering Debye Plane wave Physics Field (mathematics) Maxwell's equations Scattering theory Electromagnetic radiation Transient (computer programming) Dielectric Half-space Plane (geometry) Optics Mathematical analysis Classical mechanics Mathematics Condensed matter physics Geometry Quantum mechanics Computer science

Subject Areas

Electromagnetic Scattering and Analysis ·Atomic and Molecular Physics, and Optics ·Physical Sciences

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