Generalized Formulation for the Scattering from a Ferromagnetic Microwire
关键词:
Analytical techniques, ferrites, ferromagnetic microwires, scattering摘要
In this paper, we present a full wave analysis for the scattering of an obliquely incident plane wave of an arbitrary polarization angle due to an infinite magnetized ferromagnetic microwire. The analysis is based on expanding the incident and scattered waves as infinite sets of cylindrical waves and matching the corresponding modes on the surface of the microwire to obtain the unknown amplitudes of the scattered fields. The gyromagnetic properties of the ferromagnetic material introduce a coupling between the electric and magnetic field components inside the microwire. This coupling is the reason of cross polarization in the scattered field.
##plugins.generic.usageStats.downloads##
参考
D. Y.-Jiang, J. J.-Jun, D. Gang, T. Bin, B. S.-Wei, and H. H.-Hui, “Magnetic and Microwave Properties of Glass-Coated Amorphous Ferromagnetic Microwires”, Trans. Nonferrous Met. Soc. China, vol. 17, pp. 1352-1357, 2007.
F. X. Qin, H. X. Peng, L. V. Panina, M. Ipatov, V. Zhukova, A. Zhukov, and J. Gonzalez, "Smart Composites with Short Ferromagnetic Microwires for Microwave Applications," IEEE Transactions on Magnetics, vol. 47, no. 10, pp. 4481-4484, Oct. 2011.
F. X. Qin, H. X. Peng, N. Pankratov, M. H. Phan, L. V. Panina, M. Ipatov, V. Zhukova, A. Zhukov, and J. Gonzalez, “Exceptional Electromagnetic Interference Shielding Properties of Ferromagnetic Microwires Enabled Polymer Composites”, J. Appl. Phys. vol. 108, pp. 044510, 2010.
L. Liu, Z. H. Yang, L. B. Kong, and P. Li, "Nanocrystalline Ferromagnetic Microwires Silicone Flexible Composite with Optical Transparency," IEEE Transactions on Electromagnetic Compatibility, (In Press).
J. Carbonell, H. G.-Miqule, and J. S.-Dehsa, “Double Negative Metamaterials Based on Ferromagnetic Microwires”, Physical Review B, vol. 81, pp. 024401, 2010.
Y. Huang, G. Wen, T. Li, and K. Xie, “PositiveNegative-Positive Metamaterial Consisting of Ferrimagnetic Host and Wire Array,” Applied Computational Electromagnetics Society (ACES) Journal, vol. 25, no. 8, pp. 696-702, Aug. 2010.
H. G.-Miquel, J. Carbonell, and J. S.-Dehesa, “Left Handed Material Based on Amorphous Ferromagnetic Microwires Tunable by Dc Current”, Applied Physics Letters, vol. 97, pp. 094102, 2010.
A. Labrador, C. G.-Polo, J. I. P.-Landazábal, V. Zablotskii, I. Ederra, R. Gonzalo, G. B.- Confalonieri, and M. Vázquez, "Magnetotunable Left-Handed Fesib Ferromagnetic Microwires," Opt. Lett. vol. 35, pp. 2161-2163, 2010.
M. Ipatov, V. Zhukova, L. V. Panina, and A. Zhukov, “Ferromagnetic Microwires Composite Metamaterials with Tuneable Microwave Electromagnetic Parameters”, Progress in Electromagnetics Research Symposium PIERS, vol. 5, no. 6, pp. 586-590, 2009.
D. Makhnovskiy, A. Zhukov, V. Zhukova, and J. Gonzalez, “Tunable and Self-Sensing Microwave Composite Materials Incorporating Ferromagnetic Microwires”, Advances in Science and Technology, vol. 54, pp. 201-210, 2008.
L. V. Panina, M. Ipatov, V. Zhukova, A. Zhukov, and J. Gonzalez, “Microwave Metamaterials with Ferromagnetic Microwires”, Applied Physics A, vol. 103, pp. 653-657, 2011.
A. F. Yagli, J. K. Lee, and E. Arvas, “Monochromatic Scattering from ThreeDimensional Gyrotropic Bodies using the TLM Method”, Applied Computational Electromagnetics Society (ACES) Journal, vol. 22, no. 1, pp. 155-163, March 2007.
F. Hunsberger, R. Luebbers, and K. Kunz, “FiniteDifference Time-Domain Analysis of Gyrotropic Media - I: Magnetized Plasma," IEEE Trans. on Antennas and Propagation, vol. 40, no. 12, pp. 1489-1495, 1992.
I. Liberal, I. Ederra, C. G.-Polo, A. Labrador, J. L. P.-Landazábal, R. Gonzalo , "Theoretical Modeling and Experimental Verification of the Scattering from a Ferromagnetic Microwire," IEEE Trans. on Microwave Theory and Techniques , vol. MTT-59, no. 3, pp. 517-526, March 2011.
I. Liberal, I. S. Nefedov, I. Ederra, R. Gonzalo, and S. A. Tretyakov, “Electromagnetic Response and Homogenization of Grids of Ferromagnetic Microwires”, J. Appl. Phys. vol. 110, pp. 064909, 2011
R. A. Waldron, "Electromagnetic Wave Propagation in Cylindrical Waveguides Containing Gyromagnetic Media," Journal of the British Institution of Radio Engineers, vol.18, no.10, pp. 597-612, Oct. 1958.
R. A. Waldron, "Theory of the Mode Spectra of Cylindrical Waveguides Containing Gyromagnetic Media," Journal of the British Institution of Radio Engineers, vol. 19, no. 6, pp. 347-356, 1959.
J. Helszajn and A. A. P. Gibson, “Mode Nomenclature of Circular Gyromagnetic and Anisotropic Waveguides with Magnetic and Open Walls”, IEE Proc., vol. 134, pt. H, no. 6, pp. 488- 496, 1987.
Y. Rong, W.-B. Dou, and S. -F. Li, “Generalized Field Theory of Irregular Waveguide Partially Filled with Longitudinally Magnetized Ferrite”, IEE Proc., vol. 138, pt. H, no. 5, pp. 412-416, 1991.
D. Pozar, Microwave Engineering. 3rd Ed. John Wiley & Sons, Inc., Ch. 9, 2005.


