1966IEEE Transactions on Antennas and PropagationRequires access

Numerical solution of initial boundary value problems involving maxwell's equations in isotropic media

K.S. Yee

Open publisher page 14,840 citations

Abstract

Maxwell's equations are replaced by a set of finite difference equations. It is shown that if one chooses the field points appropriately, the set of finite difference equations is applicable for a boundary condition involving perfectly conducting surfaces. An example is given of the scattering of an electromagnetic pulse by a perfectly conducting cylinder.

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Maxwell's equations are replaced by a set of finite difference equations. It is shown that if one chooses the field points appropriately, the set of finite difference equations is applicable for a boundary condition involving perfectly conducting surfaces. An example is given of the scattering of an electromagnetic pulse by a perfectly conducting cylinder.

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Available abstract

Maxwell's equations are replaced by a set of finite difference equations. It is shown that if one chooses the field points appropriately, the set of finite difference equations is applicable for a boundary condition involving perfectly conducting surfaces. An example is given of the scattering of an electromagnetic pulse by a perfectly conducting cylinder.

Key concepts: Maxwell's equations, Boundary value problem, T-matrix method, Inhomogeneous electromagnetic wave equation, Mathematical analysis, Electromagnetic field solver, Mathematics, Finite difference method

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