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Published on: November 30, 2012
Modal phase matching in z-cut dual-layered lithium niobate rib waveguide for second harmonic generation
Abstract:
We report a comprehensive investigation of modal phase matching in z-cut dual-layered thin-film lithium niobate rib waveguides, emphasizing geometrical dispersion engineering for efficient second harmonic generation. Through systematic analysis, we examine the influence of waveguide cross-sectional dimensional variations on phase-matching conditions and conversion efficiency. Our findings reveal that the phase-matching wavelength exhibits substantially greater sensitivity to thickness fluctuations compared to variations in waveguide width and etch depth. By exploiting modal phase matching in z-cut thin-film lithium niobate, we demonstrate second harmonic generation with conversion efficiencies reaching the order of 103% W-1cm-2. Our findings provide new insights into the optimization of optical frequency conversion processes and present significant potential for advancing on-chip nonlinear photonic devices based on thin-film lithium niobate platforms.

