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The aim of the International Journal of Applied Electromagnetics and Mechanics is to contribute to intersciences coupling applied electromagnetics, mechanics and materials. The journal also intends to stimulate the further development of current technology in industry. The main subjects covered by the journal are:
- Physics and mechanics of electromagnetic materials and devices
- Computational electromagnetic in materials and devices
- Applications of electromagnetic fields and forces
The three interrelated key subjects - materials, electromagnetics and mechanics - include the following aspects: control, micromachines, intelligent structure, inverse problem, eddy current analysis, electromagnetic NDE, magnetic materials, magnetoelastic effects in materials, bioelectromagnetics, magnetosolid mechanics, magnetic levitations, applied physics of superconductors, superconducting magnet technology, superconducting propulsion system, nuclear fusion reactor components and wave propagation in electromagnetic fields.
Authors: Venugopal, Vijayakumar C. | Lakhtakia, Akhlesh
Article Type: Research Article
Abstract: The tilt angles and the ellipticities of transmitted and reflected plane waves are shown to be different from those of plane waves normally incident on slabs of dissipative dielectric thin‐film helicoidal bianisotropic mediums (TFHBMs). These slabs can therefore function as transformers of vibration ellipses in optical circuits. The transformation properties can be engineered by proper selection of geometric parameters, and can be dynamically controlled by varying the concentration of appropriate fluids in the porous TFHBMs. The true circular dichroism and an apparent circular dichroism are shown to convey different types of information.
DOI: 10.3233/JAEM-1998-117
Citation: International Journal of Applied Electromagnetics and Mechanics, vol. 9, no. 2, pp. 201-210, 1998
Authors: Nefedov, Igor S.
Article Type: Research Article
Abstract: An efficient spectral-domain full-wave algorithm based on a 4 x 4 transfer matrix and the integral equation method is developed for microstrip lines and microstrip discontinuities, embedded into multilayered bianisotropic media. A method for the reduction of singularity order of Green’s dyadic is proposed. An infinite array of microstrip lines and a 2D microstrip grating, formed by rectangular elements are considered. The dispersion characteristics of 1D slow‐wave structures and the resonant frequencies of 2D grating are computed. The dependence of these characteristics upon the chirality and nonreciprocity of bianisotropic media is studied.
DOI: 10.3233/JAEM-1998-118
Citation: International Journal of Applied Electromagnetics and Mechanics, vol. 9, no. 2, pp. 211-223, 1998
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