Surface plasmon resonance-enhanced light interaction in an integrated ormocomp nanowire

被引:0
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作者
Charusluk Viphavakit
Sakoolkan Boonruang
Christos Themistos
Michael Komodromos
Waleed S. Mohammed
B. M. Azizur Rahman
机构
[1] City University London,School of Mathematics, Computer Science and Engineering
[2] Thailand National Electronics and Computer Technology Center (NECTEC),Photonics Technology Laboratory
[3] Frederick University,Department of Electrical Engineering
[4] Bangkok University,Center of Research in Optoelectronics, Communication and Control System (BU
来源
Optical and Quantum Electronics | 2016年 / 48卷
关键词
Polymer waveguides; Subwavelength structures; Integrated optics devices; Optical design and fabrication;
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学科分类号
摘要
An integrated ormocomp nanowire coated with gold metal layer is proposed and its optical characteristics with the effect of surface plasmon resonance (SPR) are studied. The integrated rib-like nanowire has a trapezoidal shape with sidewall angles of 75°. It is coated with 50 nm gold layer to introduce the SPR and enhance the evanescent field in the sensing region located at the dielectric/metal interface. The possible field modes, the normalized power confinement, and the SPR peak position of the nanowire are studied over the wavelength and the metal thickness by using the full-vectorial H-field FEM in quasi-TM mode. The attenuation coefficient of the nanowire, the SPR peak wavelength, and the wavelength shift is experimentally extracted for three different cladding materials. The redshift of the supermode coupling between the dielectric mode and the anti-symmetric supermode is observed with the higher cladding-index and larger metal thickness. The improvement of the power confinement in the sensing region with the SPR effect is ten times (10×) better than a previous similar study.
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