The Diffraction by the Half-plane with the Fractional Boundary Condition

作者

  • Vasil Tabatadze Institute of Informatics Istanbul Technical University, Istanbul, 34398, Turkey
  • Eldar Veliyev Institute of Informatics Istanbul Technical University, Istanbul, 34398, Turkey
  • Ertuğrul Karaçuha Institute of Informatics Istanbul Technical University, Istanbul, 34398, Turkey
  • Kamil Karaçuha Institute of Informatics Istanbul Technical University, Istanbul, 34398, Turkey

关键词:

Electromagnetic waves, half-plane, integral boundary conditions.

摘要

In this article, there is considered the electromagnetic plane wave diffraction by the half-plane with fractional boundary conditions. As a mathematical tool, the fractional calculus is used. The theoretical part is given based on which the near field, Poynting vector and energy density distribution are calculated. Interesting results are obtained for the fractional order between marginal values, which describes a new type of material with new properties. The results are analyzed.

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参考

K. S. Yee, “Numerical solution of initial boundary value problems involving Maxwell’s equations in isotropic media,” IEEE Trans. Antennas Propagat., vol. AP-14, pp. 302-307, 1966.

A. Z. Elsherbeni, FDTD Course Notes, Department of Electrical Engineering, The University of Mississippi, MS, Spring 2001.

R. F. Harrington, Time-Harmonic Electromagnetic Fields. McGraw-Hill, New York, 1961.

S. Shin and S. Kanamaluru, “Diplexer design using EM and circuit simulation techniques,” IEEE Micro. Magazine, vol. 8, no. 2, pp. 77-82, Apr. 2007.

V. Rizzoli, A. Costanzo, D. Masotti, and P. Spadoni, “Circuit-level nonlinear electromagnetic co-simulation of an entire microwave link,” IEEE MTT-S Int. Microwave Symp. Dig., Long Beach, CA, pp. 813-816, June 2005.

Ansoft High Frequency Structure Simulation (HFSS), ver. 10, Ansoft Corporation, Pittsburgh, PA, 2005.

CST Microwave Studio, ver. 2008, Computer Simulation Technology, Framingham, MA, 2008.

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已出版

2020-11-07

栏目

General Submission