Fabrication and Measurement of Sidewall Gratings Integrated in Hybrid As2S3 -Ti:LiNbO3 Optical Waveguides

In this paper, we demonstrated the fabrication and measurement of sidewall gratings integrated in a hybrid type of optical waveguide: As 2 S 3 -Ti:LiNbO 3 . This hybrid waveguide is constructed by patterning arsenic tri-sulfide (As 2 S 3 ) strips on the midline of titanium-diffused channel waveguide...

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Published inJournal of lightwave technology Vol. 32; no. 17; pp. 2989 - 2995
Main Authors Xin Wang, Yifeng Zhou, Madsen, Christi K.
Format Journal Article
LanguageEnglish
Published New York IEEE 01.09.2014
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract In this paper, we demonstrated the fabrication and measurement of sidewall gratings integrated in a hybrid type of optical waveguide: As 2 S 3 -Ti:LiNbO 3 . This hybrid waveguide is constructed by patterning arsenic tri-sulfide (As 2 S 3 ) strips on the midline of titanium-diffused channel waveguide in lithium niobate (Ti:LiNbO 3 ). Sidewall gratings are written on both sidewalls of As 2 S 3 strips by electron beam lithography (EBL) with 3% PMMA resist and a dose 350 μC/cm 2 at 50-kV electrons. The measured reflectance bandwidth was between 2.4 and 6.7 nm. Coupling coefficients ranging from 2.5 to 8.9 mm -1 were obtained. A transmission peak with a 3-dB bandwidth of ~0.25 nm was observed in the rejection band of a 432 μm-long phase-shifted sidewall grating. Such sidewall gratings integrated in hybrid As 2 S 3 -Ti:LiNbO 3 waveguide can be used for numerous integrated optical devices including optical filters, switches, modulators, lasers, sensors, and wavelength division multiplexing (WDM).
AbstractList In this paper, we demonstrated the fabrication and measurement of sidewall gratings integrated in a hybrid type of optical waveguide: As2S3-Ti:LiNbO3. This hybrid waveguide is constructed by patterning arsenic tri-sulfide (As2S3) strips on the midline of titanium-diffused channel waveguide in lithium niobate (Ti:LiNbO3). Sidewall gratings are written on both sidewalls of As2 S3 strips by electron beam lithography (EBL) with 3% PMMA resist and a dose 350 μC/cm 2 at 50-kV electrons. The measured reflectance bandwidth was between 2.4 and 6.7 nm. Coupling coefficients ranging from 2.5 to 8.9 mm-1 were obtained. A transmission peak with a 3-dB bandwidth of ∼0.25 nm was observed in the rejection band of a 432 μm-long phase-shifted sidewall grating. Such sidewall gratings integrated in hybrid As2S3-Ti:LiNbO3 waveguide can be used for numerous integrated optical devices including optical filters, switches, modulators, lasers, sensors, and wavelength division multiplexing (WDM). [PUBLICATION ABSTRACT]
In this paper, we demonstrated the fabrication and measurement of sidewall gratings integrated in a hybrid type of optical waveguide: As 2 S 3 -Ti:LiNbO 3 . This hybrid waveguide is constructed by patterning arsenic tri-sulfide (As 2 S 3 ) strips on the midline of titanium-diffused channel waveguide in lithium niobate (Ti:LiNbO 3 ). Sidewall gratings are written on both sidewalls of As 2 S 3 strips by electron beam lithography (EBL) with 3% PMMA resist and a dose 350 μC/cm 2 at 50-kV electrons. The measured reflectance bandwidth was between 2.4 and 6.7 nm. Coupling coefficients ranging from 2.5 to 8.9 mm -1 were obtained. A transmission peak with a 3-dB bandwidth of ~0.25 nm was observed in the rejection band of a 432 μm-long phase-shifted sidewall grating. Such sidewall gratings integrated in hybrid As 2 S 3 -Ti:LiNbO 3 waveguide can be used for numerous integrated optical devices including optical filters, switches, modulators, lasers, sensors, and wavelength division multiplexing (WDM).
Author Xin Wang
Madsen, Christi K.
Yifeng Zhou
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crossref_primary_10_1364_AO_53_008313
crossref_primary_10_1109_JPHOT_2016_2616220
crossref_primary_10_1364_OE_22_027183
crossref_primary_10_4236_opj_2018_84011
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integrated optical devices
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linear tapers
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lithium niobate
electron beam lithography
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SubjectTerms Couplings
Gratings
Lithium niobate
Optical device fabrication
Optical waveguides
Reflectivity
Strips
Title Fabrication and Measurement of Sidewall Gratings Integrated in Hybrid As2S3 -Ti:LiNbO3 Optical Waveguides
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