In this work we design and theoretically investigate optical switches based on long-range plasmonic directional couplers, which are controlled via the electro-optic effect of nematic liquid crystal layers. Employed numerical tools include a fully-anisotropic finite-element-method, the eigenmode-expansion method, and a rigorous finite-element based calculation of the liquid-crystal molecular reorientation. Both horizontal and vertical configurations are assessed, providing a comparison in terms of key-performance characteristics, such as coupling length, switching voltage, insertion losses, and crosstalk. These tunable plasmonic devices are envisaged as ultra-low power consumption switching elements in integrated platforms for optical inter-chip interconnects. © 2013 SPIE.

Liquid-crystal tunable plasmonic stripe directional coupler switches

Zografopoulos;Beccherelli;
2013

Abstract

In this work we design and theoretically investigate optical switches based on long-range plasmonic directional couplers, which are controlled via the electro-optic effect of nematic liquid crystal layers. Employed numerical tools include a fully-anisotropic finite-element-method, the eigenmode-expansion method, and a rigorous finite-element based calculation of the liquid-crystal molecular reorientation. Both horizontal and vertical configurations are assessed, providing a comparison in terms of key-performance characteristics, such as coupling length, switching voltage, insertion losses, and crosstalk. These tunable plasmonic devices are envisaged as ultra-low power consumption switching elements in integrated platforms for optical inter-chip interconnects. © 2013 SPIE.
2013
Istituto per la Microelettronica e Microsistemi - IMM
Inglese
Fedeli, JM; Vivien, L; Smit, MK
Integrated Photonics: Materials, Devices, and Applications II
Integrated Photonics: Materials, Devices, and Applications II
8767
876303
8
9780819495648
http://proceedings.spiedigitallibrary.org/proceeding.aspx?articleid=1691244
Sì, ma tipo non specificato
24-26 April 2013
Grenoble (France)
Electroopt
Integrated platform
Molecular reorientation
Plasmonic devices
Plasmonic directional couplers
Switching voltages
Ultra-low power consumption
Vertical configurations
Directional couplers
Finite element method
Liquid crystals
Liquids
Nematic liquid crystals
Numerical methods
Optical switches
Optical waveguides
Photonics
Plasmons
4
none
Zografopoulos, Dimitrios; Dc, ; Beccherelli, Romeo; R,
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
   tunAble Liquid-crystal LOng-range surface PLASMon polariton components
   ALLOPLASM
   FP7
   273528
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/215889
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