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Kerr and Faraday Rotations of Magneto‐Optical Multilayers under the Condition of Total Internal Reflection

Identifieur interne : 001196 ( Main/Corpus ); précédent : 001195; suivant : 001197

Kerr and Faraday Rotations of Magneto‐Optical Multilayers under the Condition of Total Internal Reflection

Auteurs : N. Richard ; A. Dereux ; E. Bourillot ; T. David ; J. P. Goudonnet ; F. Scheurer ; E. Beaurepaire

Source :

RBID : ISTEX:1AF3DC43AE91381CFD4CCBC929B3D5E525FA5750

Abstract

This paper describes the magneto‐optical effects of metallic multilayers under the condition of total internal reflection. In the framework of the Green's dyadic technique, we present numerical simulations which account for the variation of the magneto‐optical signal with either the angle of incidence or the wavelength. Kerr and Faraday rotations are found to increase significantly around the critical angle. We also discuss the importance of plasmon effects in the structure of the Kerr and Faraday rotations spectra.

Url:
DOI: 10.1002/(SICI)1521-396X(199909)175:1<225::AID-PSSA225>3.0.CO;2-U

Links to Exploration step

ISTEX:1AF3DC43AE91381CFD4CCBC929B3D5E525FA5750

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<p>This paper describes the magneto‐optical effects of metallic multilayers under the condition of total internal reflection. In the framework of the Green's dyadic technique, we present numerical simulations which account for the variation of the magneto‐optical signal with either the angle of incidence or the wavelength. Kerr and Faraday rotations are found to increase significantly around the critical angle. We also discuss the importance of plasmon effects in the structure of the Kerr and Faraday rotations spectra.</p>
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<abstract lang="en">This paper describes the magneto‐optical effects of metallic multilayers under the condition of total internal reflection. In the framework of the Green's dyadic technique, we present numerical simulations which account for the variation of the magneto‐optical signal with either the angle of incidence or the wavelength. Kerr and Faraday rotations are found to increase significantly around the critical angle. We also discuss the importance of plasmon effects in the structure of the Kerr and Faraday rotations spectra.</abstract>
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