Title : 
Comparison between difference-frequency generation and parametric fluorescence in quasi-phase-matched lithium niobate stripe waveguides
         
        
            Author : 
Baldi, P. ; Sundheimer, M. ; Hadi, K. El ; De Micheli, M.P. ; Ostrowsky, D.B.
         
        
            Author_Institution : 
Lab. de Phys. de la Matiere Condensee, Univ. de Nice-Sophia Antipolis, Valbonne, France
         
        
        
        
        
            fDate : 
6/1/1996 12:00:00 AM
         
        
        
        
            Abstract : 
Tuning curves and gain are two relevant parameters for integrated optical parametric oscillators. We show in this paper that they can be determined with a good precision without building a high-finesse cavity by measurement of the optical parametric fluorescence and difference-frequency generation. In the first part of this paper, we compare theoretically the guided optical parametric fluorescence and the guided difference-frequency generation in the quasi-phase matching configuration. In the second part, we compare experimental results on optical parametric fluorescence in the 1.2-2.2-μm region and optical difference-frequency generation from a 1.55-μm laser diode using a pump wavelength between 775-795 nm in quasi-phase-matched lithium niobate stripe waveguides. This comparison shows that the gain measured by both methods is identical, but, while parametric fluorescence allows us to obtain the quasi-phase-matching curve, the difference-frequency generation gives a simpler and more accurate measurement of the gain. The combination of these two techniques provides therefore a powerful tool for evaluating the different fabrication processes of the nonlinear waveguides, without actually fabricating a parametric oscillator
         
        
            Keywords : 
fluorescence; integrated optics; lithium compounds; measurement errors; measurement theory; optical frequency conversion; optical parametric oscillators; optical waveguides; semiconductor lasers; tuning; μm laser diode; 1.2 to 2.2 mum; 1.55 mum; 775 to 795 nm; LiNbO3; Tuning curves; accurate gain measurement; difference-frequency generation; fabrication processes; guided difference-frequency generation; guided optical parametric fluorescence; high-finesse cavity; integrated optical parametric oscillators; lithium niobate stripe waveguides; nonlinear waveguides; optical difference-frequency generation; optical parametric fluorescence; parametric fluorescence; precision; pump wavelength; quasi-phase matching configuration; quasi-phase-matched; quasi-phase-matching curve; Fluorescence; Gain measurement; Integrated optics; Laser tuning; Nonlinear optics; Optical pumping; Optical tuning; Optical waveguides; Oscillators; Wavelength measurement;
         
        
        
            Journal_Title : 
Selected Topics in Quantum Electronics, IEEE Journal of
         
        
        
        
        
            DOI : 
10.1109/2944.577399