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Simulation of copper thin film thickness optimization for surface plasmon using the finite element method

Author(s)
Leelawattananon, Tanaporn
Locharoenrat, Kitsakorn
Chittayasothorn, Suphamit
Date Issued
January 1, 2017
Type
Conference Paper
DOI
10.5220/0006395601880195
Abstract
This paper presents a computer simulation of optical activations based on the Kretschmann configuration using a prism for the observation of the surface plasmon wave. This is according to the condition of the dispersion relation. The analysis of the electric field of the surface plasmon wave which appears at the interface between the metal layer and the air layer is done by using the Finite Element Method (FEM). The simulation is performed using the COMSOL Multiphysics software which supports the FEM. The objective of our experiment is to find the most suitable thickness of the metal thin film which is most suitable for the surface plasmon excitation when activated by 632.5 nm red laser light source. The red laser light source is commonly available and also very economical. The metal used in our work is copper which is an economical noble metal and gives better conductivity than gold. The findings from the simulation will be used in the future high precision physical experiments. The outcome of this research project, the surface plasmon wave on copper thin film, is expected to be used in bio-molecular detectors or high speed THz communications.
Citation
Simultech 2017 Proceedings of the 7th International Conference on Simulation and Modeling Methodologies Technologies and Applications, 188-195, 2017
Subjects

Finite Element Method...

Kretschmann Configura...

Simulation

Surface Plasmon Wave

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