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Erschienen in: Optical and Quantum Electronics 2/2015

01.02.2015

Numerical investigation of a nano-scale electro-plasmonic switch based on metal-insulator-metal stub filter

verfasst von: Ahmad Naseri Taheri, Hassan Kaatuzian

Erschienen in: Optical and Quantum Electronics | Ausgabe 2/2015

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Abstract

We present a nano-scale electro-plasmonic scheme operating at 1550 nm based on plasmonic Metal-Insulator-Metal waveguide and stub filter configuration. The linear dependency of the transmission spectra of the stub filter to the length of the stubs allows designing a switch that works as normally ON or OFF switch by selecting the length of the stubs 300 or 410 nm, respectively. In our proposed waveguide-based structure, the core is an electro-optic material known as 4-dimethyl-amino-Nmethyl-4-stilbazolium tosylate with the refractive index 2.2 while the metal cladding is silver. Three-dimensional Finite Element Method simulations demonstrated that by applying a 10 V voltage to the silver cladding, a red-shift in the transmission spectra of the filter leads to turn the switch OFF or ON with calculated extinction ratio \(-13.83\) and 11.81 dB, respectively. The calculation of the capacitance implies that the switching rise-time of the switch is less than 20 fs and the bandwidth is far beyond the 18 GHz. At the maximum dimension \(460\,\hbox {nm}\times 450\,\hbox {nm}\), the subwavelength size of the switch promises the potential for future compact integrated plasmonic circuitry. For the verification of three dimensional simulation results, we have tried it, using two-dimensional transmission line method for modeling the stub filter, which demonstrates a reasonable accuracy in comparison with three-dimensional finite element method.

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Metadaten
Titel
Numerical investigation of a nano-scale electro-plasmonic switch based on metal-insulator-metal stub filter
verfasst von
Ahmad Naseri Taheri
Hassan Kaatuzian
Publikationsdatum
01.02.2015
Verlag
Springer US
Erschienen in
Optical and Quantum Electronics / Ausgabe 2/2015
Print ISSN: 0306-8919
Elektronische ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-014-9895-1

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