400%/W second harmonic conversion efficiency in 14 μ m-diameter gallium phosphide-on-oxide resonators
Abstract
Second harmonic conversion from 1550~nm to 775~nm with an efficiency of 400% W-1 is demonstrated in a gallium phosphide (GaP) on oxide integrated photonic platform. The platform consists of doubly-resonant, phase-matched ring resonators with quality factors Q 104, low mode volumes V 30 (λ/n)3, and high nonlinear mode overlaps. Measurements and simulations indicate that conversion efficiencies can be increased by a factor of 20 by improving the waveguide-cavity coupling to achieve critical coupling in current devices.
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