A simple diagram is described Cor displaying complex field data calculated using an original finite-difference time-domain algorithm. This polar plot is used to display field properties within a culture medium placed ...
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A simple diagram is described Cor displaying complex field data calculated using an original finite-difference time-domain algorithm. This polar plot is used to display field properties within a culture medium placed in a transverse electro-magnetic (TEM) cell, and shows the presence of an elliptically polarised exposure field with reactive phasing, arising from a plane wave incident field. The pictograph aids in comprehending this field behaviour, which may be relevant to any biological effects.
The payer presents a new hybrid method for efficiently studying the coupling between an antenna and an inhomogeneous penetrable object, lying in the near field region of the source. It is based on the combination of t...
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The payer presents a new hybrid method for efficiently studying the coupling between an antenna and an inhomogeneous penetrable object, lying in the near field region of the source. It is based on the combination of the marching on in time version of the method of moment (MoMTD), and the finite-difference in time-domain (FDTD) algorithm. The use of the equivalence principle leads to the treatment of the original complex problem as the interaction of two simpler subproblems, each of them approached differently. The hybrid method is validated by comparing our results obtained for significant strong coupling cases with data computed by other numerical techniques and with experimental values.
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