Plasmonic stripe waveguides have been proposed as a platform for inter-chip photonic interconnects, owing to their ease of fabrication, relatively low propagation losses, and the potential for dynamic tuning of the propagating signal. Contrary to established approaches based on thermal tuning, we design and study optical switches based on long-range plasmonic couplers controlled via the electro-optic effect of nematic liquid crystal layers. The switching dynamics of the nematic molecules are solved taking into account the coupling between the elastic and electrostatic underlying problems. Optical waveguiding properties are calculated by a fully-anisotropic finite-element-method, and light propagation is modeled via the eigenmode-expansion method. We compare the performance of both coplanar horizontal and stacked vertical configurations in terms of coupling length, switching voltage, insertion losses, and crosstalk (Fig. 1). These tunable devices are envisaged as ultra-low power switches in integrated platforms for optical inter-chip interconnects.

Long-range plasmonic electro-optic switches

R Beccherelli;
2013

Abstract

Plasmonic stripe waveguides have been proposed as a platform for inter-chip photonic interconnects, owing to their ease of fabrication, relatively low propagation losses, and the potential for dynamic tuning of the propagating signal. Contrary to established approaches based on thermal tuning, we design and study optical switches based on long-range plasmonic couplers controlled via the electro-optic effect of nematic liquid crystal layers. The switching dynamics of the nematic molecules are solved taking into account the coupling between the elastic and electrostatic underlying problems. Optical waveguiding properties are calculated by a fully-anisotropic finite-element-method, and light propagation is modeled via the eigenmode-expansion method. We compare the performance of both coplanar horizontal and stacked vertical configurations in terms of coupling length, switching voltage, insertion losses, and crosstalk (Fig. 1). These tunable devices are envisaged as ultra-low power switches in integrated platforms for optical inter-chip interconnects.
2013
Istituto per la Microelettronica e Microsistemi - IMM
Inglese
Proc. XX Conference on Liquid Crystals - Chemistry, Physics and Applications
XX Conference on Liquid Crystals - Chemistry, Physics and Applications
I-02
1
http://www.clc2013.wat.edu.pl
Sì, ma tipo non specificato
15-20 September 2013
Miko?ajki, (PL)
liquid crystals
pl
2
none
R. Beccherelli;D. C. Zografopoulos
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/20.500.14243/209038
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