Flat broadband frequency upconversion within a thin-film lithium niobate waveguide achieved by multi-objective genetic algorithm particle swarm optimization
作者:Yiheng Wu, Haitao Chen, He Fu, Tingzhao Fu, Jianfa Zhang, Zhihong Zhu, Shilong Jin · 发表于:Optics Express · 年份:2025 · DOI:10.1364/oe.550626 · 被引用次数:2 · 研究领域:Advanced Fiber Laser Technologies、Photorefractive and Nonlinear Optics、Photonic and Optical Devices
In the field of nonlinear infrared frequency upconversion within a poled thin film lithium niobate (TFLN) waveguide for spectroscopy, there is a persistent demand for achieving a flat broadband response, characterized by the minimal variation in output intensity across the desired wavelength range. We propose a design method that significantly broadens the spectral bandwidth and enhances the response flatness through multi-objective genetic algorithm particle swarm optimization (GAPSO). This approach minimizes human intervention in the optimization process, thereby enhancing efficiency and accuracy compared to traditional methods that depend on preset parameters. Compared to the traditional chirped periodically poled TFLN waveguide-based infrared frequency upconversion scheme, a remarkable spectral bandwidth expansion from 180 nm to 312 nm (a 73% increase) and an improved flatness from 1.71 dB to 0.56 dB (a reduction of over 67%) is achieved. This work not only paves the way for a more efficient flat broadband infrared frequency upconversion scheme but also opens new avenues for advancements in nonlinear optical applications, such as telecommunications and sensing technologies.