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Updated: Oct 9, 2026

Microwave Photonics Systems Based on Whispering-gallery-mode Resonators
Published on: August 5, 2013
Visualizing and Optimizing Phase Matching in Nonlinear Guided-Mode Resonators With the Green's Function Integral
Chengkang Liang1, Quanying Li1, Jiale Xu1
1School of Materials Sun Yat-Sen University Shenzhen China.
Abstract:
Efficient nonlinear frequency conversion in nanophotonics requires not only strong fundamental field but also precise phase matching among distributed nonlinear sources. Here, we develop the two-dimensional Green's function integral method (GFIM) to directly visualize and optimize phase matching in nonlinear guided-mode resonators. Using GFIM phase analysis, we generalize the phase-matching factor (PMF) as a rigorous metric of spatial phase coherence in harmonic generation, revealing severe phase mismatch in conventional guide mode resonators. Guided by phase-matching profiles, we propose design strategies to improve the phase coherence, particularly by introducing a high-index waveguide layer that confines the fundamental field in the nonlinear material to regions where the harmonic Green's function varies slowly. This configuration achieves a PMF exceeding 0.91, approaching the ideal value of unity, and yields a record SHG efficiency of 26.7% at a low pump intensity of 2 kW/cm2. These results establish the microscopic phase-matching visualization as an effective strategy for compact high-performance nonlinear photonic devices.
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