Unraveling the relationship between electromagnetic field intensity and the magnetic modulation of the wave vector of coupled surface plasmon polaritons
Author(s) -
J. F. Torrado,
J. B. GonzálezDíaz,
Antonio GarcíaMartín,
G. Armelles
Publication year - 2013
Publication title -
new journal of physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.584
H-Index - 190
ISSN - 1367-2630
DOI - 10.1088/1367-2630/15/7/075025
Subject(s) - physics , surface plasmon polariton , dielectric , wave vector , condensed matter physics , plasmon , polariton , surface plasmon , optical field , electromagnetic field , magnetic field , field (mathematics) , near and far field , optics , optoelectronics , quantum mechanics , mathematics , pure mathematics
The magnetic-field-induced wave-vector modulation of surface plasmon polaritons (SPPs) is analytically derived for dielectric/metal and dielectric/metal/dielectric systems when a very thin magneto-optical metallic film is placed at different positions in the metal. In the simplest case of a single dielectric/metal interface, the SPP wave-vector modulation is found to be proportional to the intensity of the electromagnetic field at the location of the magneto-optically active layer. For the more complex dielectric/metal/dielectric systems, the SPPs existing at each dielectric/metal interface interact to give rise to modes with a symmetric- and anti-symmetric-like character. We show that in this case the relationship between wave-vector modulation and field distribution is more complex and does not follow a proportionality law for coupled eigenmodes.
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