铌酸锂
谐振器
二次谐波产生
光子学
材料科学
波导管
光电子学
能量转换效率
非线性光学
光学
作者
Juanjuan Lu,Joshua B. Surya,Xianwen Liu,Alexander W. Bruch,Zheng Gong,Yuntao Xu,Hong X. Tang
出处
期刊:Optica
[Optica Publishing Group]
日期:2019-12-20
卷期号:6 (12): 1455-1460
被引量:144
标识
DOI:10.1364/optica.6.001455
摘要
Lithium niobate (LN), dubbed by many as the silicon of photonics, has recently risen to the forefront of chip-scale nonlinear optics research since its demonstration as an ultralow-loss integrated photonics platform. Due to its significant quadratic nonlinearity (χ(2)), LN inspires many important applications such as second-harmonic generation (SHG), spontaneous parametric downconversion, and optical parametric oscillation. Here, we demonstrate high-efficiency SHG in dual-resonant, periodically poled z-cut LN microrings, where quasi-phase matching is realized by field-assisted domain engineering. Meanwhile, dual-band operation is accessed by optimizing the coupling conditions in fundamental and second-harmonic bands via a single pulley waveguide. As a result, when pumping a periodically poled LN microring in the low power regime at around 1617 nm, an on-chip SHG efficiency of 250,000%/W is achieved, a state-of-the-art value reported among current integrated photonics platforms. An absolute conversion efficiency of 15% is recorded with a low pump power of 115 μW in the waveguide. Such periodically poled LN microrings also present a versatile platform for other cavity-enhanced quasi-phase-matched χ(2) nonlinear optical processes.
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