Title :
LiNbO3 optical waveguides formed in a new proton source
Author :
Passaro, Vittorio M N ; Armenise, Mario N. ; Nesheva, Diana ; Savatinova, Ivanka T. ; Pun, Edwin Y B
Author_Institution :
Optoelectronics Lab., Politecnico di Bari, Italy
fDate :
1/1/2002 12:00:00 AM
Abstract :
Proton-exchanged planar waveguides have been fabricated on Z-cut and X-cut lithium niobate crystals by using a new proton source formed by a mixture of benzoic and adipic acids. Waveguide index profiles and optical characteristics have been obtained at different values of the adipic-benzoic acid concentration ratio. The samples have been structurally characterized by Raman and infrared (IR) absorption spectroscopy and double-crystal X-ray diffraction. Good quality samples have been fabricated by using 30 mol% ratio dilution, showing very low scattering levels (<0.1 dB/cm), relatively high electrooptic coefficient (r33=0.88 pm/V), and low relative percentage of interstitial protons (26%). The main factor limiting the waveguide optical properties is the substitutional-interstitial proton ratio, which can be easily controlled to produce good quality waveguides. A demonstration of the repeatability of the exchange process in the acid mixture is also provided
Keywords :
Raman spectra; X-ray diffraction; electro-optical effects; infrared spectra; ion exchange; lithium compounds; optical fabrication; optical planar waveguides; refractive index; IR absorption spectroscopy; LiNbO3; LiNbO3 optical waveguides; Raman spectroscopy; X-cut; Z-cut; acid mixture; adipic acids; adipic-benzoic acid concentration ratio; benzoic acids; double-crystal X-ray diffraction; exchange process; high electrooptic coefficient; interstitial protons; lithium niobate crystals; low scattering levels; optical characteristics; optical properties; proton source; proton-exchanged planar optical waveguides; substitutional-interstitial proton ratio; waveguide index profiles; Crystals; Infrared spectra; Lithium niobate; Optical planar waveguides; Optical scattering; Optical waveguides; Planar waveguides; Protons; Raman scattering; Spectroscopy;
Journal_Title :
Lightwave Technology, Journal of