DocumentCode
2575701
Title
Silicon-Organic Hybrid (SOH) devices for nonlinear optical signal processing
Author
Freude, W. ; Brosi, J.M. ; Koos, C. ; Vorreau, P. ; Andreani, L.C. ; Dumon, P. ; Baets, R. ; Esembeson, B. ; Biaggio, I. ; Michinobu, T. ; Diederich, F. ; Leuthold, J.
Author_Institution
Inst. of High-Freq. & Quantum Electron., Univ. of Karlsruhe, Karlsruhe
Volume
2
fYear
2008
fDate
22-26 June 2008
Firstpage
84
Lastpage
87
Abstract
Silicon-on-insulator (SOI) is a promising material system for dense on-chip integration of both silicon photonic and electronic devices. The high refractive index of silicon enables strong light confinement and compact lowloss devices at telecommunication wavelengths. In addition, on-chip nonlinear optical signal processing becomes feasible, because the third-order nonlinear susceptibility chi(3) of silicon is about 200 times that of glass, and because the tight light confinement enhances the nonlinear response. However, for many applications it would be desirable to have even stronger nonlinearities, and to exploit second-order chi(2)-nonlinearities which are negligibly small in mono-crystalline silicon. On the other hand, many organic materials are highly nonlinear, but have only a low refractive index. Silicon-organic hybrid (SOH) systems combine the strengths of both materials resulting in extremely large effective nonlinearities. We report on the design of a 100 Gbit/s / 1 V modulator based on an 80 mum long slow-light SOI photonic crystal slot waveguide filled with a chi(2)-nonlinear organic material. Further, we demonstrate demultiplexing of a 120 Gbit/s signal to 10 Gbit/s with four-wave mixing in a 6 mm long SOI slot waveguide, on which an organic highly chi(3)-nonlinear material was deposited with a molecular beam.
Keywords
Kerr electro-optical effect; integrated optics; multiwave mixing; nonlinear optical susceptibility; optical Kerr effect; optical waveguides; photonic crystals; refractive index; silicon-on-insulator; Kerr effect; bit rate 10 Gbit/s; bit rate 100 Gbit/s; bit rate 120 Gbit/s; dense on-chip integration; electro-optic effect; electronic devices; four-wave mixing; light confinement; mono-crystalline silicon; nonlinear optical signal processing; nonlinear organic material; nonlinear response; organic materials; refractive index; second-order nonlinearities; silicon photonic devices; silicon-on-insulator; silicon-organic hybrid devices; slow-light SOI photonic crystal slot waveguide; third-order nonlinear susceptibility; voltage 1 V; Crystalline materials; Glass; Optical materials; Optical modulation; Optical signal processing; Optical waveguides; Organic materials; Refractive index; Silicon on insulator technology; System-on-a-chip; Kerr effect; all-optical signal processing; electro-optic effect; modulators; optical nonlinearities in organic materials; photonic crystal waveguides; silicon photonics;
fLanguage
English
Publisher
ieee
Conference_Titel
Transparent Optical Networks, 2008. ICTON 2008. 10th Anniversary International Conference on
Conference_Location
Athens
Print_ISBN
978-1-4244-2625-6
Electronic_ISBN
978-1-4244-2626-3
Type
conf
DOI
10.1109/ICTON.2008.4598598
Filename
4598598
Link To Document