Bibliographic Details
| Title: |
Diffraction by a Perfect Electromagnetic Conductor Half-Plane in an Anisotropic Plasma: An Integral Theory Approach. |
| Source: |
IEEE Transactions on Antennas & Propagation. Apr2022, Vol. 70 Issue 4, p2942-2948. 7p. |
| Subjects: |
Electromagnetic wave diffraction, Fresnel function, Electromagnetic waves, Anisotropy, Magnetic fields |
| Abstract: |
The diffraction of plane electromagnetic waves by a perfect electromagnetic conductor (PEMC) semi-infinite sheet which is embedded in an anisotropic medium is examined. The anisotropic region is modeled by a dielectric matrix. The external uniform magnetic field is taken as parallel to the edge of the semi-infinite sheet. Upon considering the $H$ -polarized incident wave, the total scattered fields are obtained with the diffracted waves by using an integral theory which is associated with the scattered fields. The results are expressed in terms of the Fresnel functions. Thus, the wave behaviors at the transition boundaries are uniform. The solutions are compared numerically with the literature including limit values. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |