Enhanced surface plasmon polariton propagation induced by active dielectrics
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Authors
Athanasopoulos, C.
Mattheakis, M.
Tsironis, G. P.
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Nazarbayev University
Abstract
We present numerical simulations for the propagation of surface plasmon polaritons (SPPs) in a
dielectric-metal-dielectric waveguide using COMSOL multiphysics software. We show that the use of
an active dielectric with gain that compensates metal absorption losses enhances substantially plasmon
propagation. Furthermore, the introduction of the active material induces, for a specific gain value, a
root in the imaginary part of the propagation constant leading to infinite propagation of the surface
plasmon. The computational approaches analyzed in this work can be used to define and tune the optimal
conditions for surface plasmon polariton amplification and propagation.