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Volume 16 Issue 3
May  1994
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Li Yibing, Xu Zechuan. ELECTROMAGNETIC WAVE PROPAGATION IN MAGNETIC MULTILAYERS-NON-RECIPROCAL REFLECTIONS[J]. Journal of Electronics & Information Technology, 1994, 16(3): 238-243.
Citation: Li Yibing, Xu Zechuan. ELECTROMAGNETIC WAVE PROPAGATION IN MAGNETIC MULTILAYERS-NON-RECIPROCAL REFLECTIONS[J]. Journal of Electronics & Information Technology, 1994, 16(3): 238-243.

ELECTROMAGNETIC WAVE PROPAGATION IN MAGNETIC MULTILAYERS-NON-RECIPROCAL REFLECTIONS

  • Received Date: 1992-12-07
  • Rev Recd Date: 1993-08-24
  • Publish Date: 1994-05-19
  • A theory of EM wave propagation through magnetic multilayers and superlattices is presented based on the propagation matrix of a magnetic film. By using the P matrix, the transmission and reflection coeffcients of layered magnetic media, including: (1) semi-infinite magnetic surfaces, (2) magnetic multilayers, (3) semi-infinite magnetic superlattices, are obtained. The numerical results show that the EM modes of a magnetic layer system are excited and manifested as the sharp dips in the S-polarized reflection, and the dispersion curves of magnetic polaritons can be measured by a method similar to attenuated total reflection (ATR) technique.
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  • Mika K, Gruberg P. Phys. Rev., 1987, B31(7): 4465-4471.[2]Camley R E, Rahman T S, Mills D L. Phys. Rev., 1983, B27(1): 266-277.[3]Barnas J. J. Phys[J].C, Condensed Matter.1990, 2(12):7173-7180[4]Sodha M S, Srivastava N C. Microwave Propagation in Ferrimagnetics. New York: Plenum Press, 1981, 97-141.[5]Stamps R L, Camley R E. Phys. Rev., 1989, B40(1): 609-621.[6]Raj N, Camley R E, Tilley D R. J. Phys. C, 1987, 20(10): 5203-5216.[7]Li Yibing. J. Phys. C, Condensed Matter, 1993, (5).[8]Knittl Z. Optics of Thin Films. New York: John Wiley Sons Ltd, 1970, Chapter 2.[9]Li Yibing, Li Shaoping, He Huahui. J Phys. C, 1988, 21(5): 2369-2377.
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