Tang Chao, Nie Mingming, Chen Jia-Yang, Ma Zhaohui, Li Zhan, Xie Yijun, Sua Yong Meng, Huang Shu-Wei, Huang Yu-Ping
Opt Lett. 2024 May 1;49(9):2449-2452. doi: 10.1364/OL.523920.
Broadband frequency comb generation through cascaded quadratic nonlinearity remains experimentally untapped in free-space cavities with bulk χ materials mainly due to the high threshold power and restricted ability of dispersion engineering. Thin-film lithium niobate (LN) is a good platform for nonlinear optics due to the tight mode confinement in a nano-dimensional waveguide, the ease of dispersion engineering, large quadratic nonlinearities, and flexible phase matching via periodic poling. Here we demonstrate broadband frequency comb generation through dispersion engineering in a thin-film LN microresonator. Bandwidths of 150 nm (80 nm) and 25 nm (12 nm) for center wavelengths at 1560 and 780 nm are achieved, respectively, in a cavity-enhanced second-harmonic generation (doubly resonant optical parametric oscillator). Our demonstration paves the way for pure quadratic soliton generation, which is a great complement to dissipative Kerr soliton frequency combs for extended interesting nonlinear applications.
通过级联二次非线性来产生宽带频率梳,在使用块状χ材料的自由空间腔中,由于高阈值功率和受限的色散工程能力,在实验上尚未得到充分利用。薄膜铌酸锂(LN)是一种用于非线性光学的良好平台,这是因为在纳米尺寸的波导中模式限制紧密、易于进行色散工程、具有大的二次非线性,并且通过周期性极化可实现灵活的相位匹配。在此,我们展示了通过薄膜LN微谐振器中的色散工程来产生宽带频率梳。在腔增强二次谐波产生(双共振光学参量振荡器)中,分别实现了中心波长在1560和780 nm时带宽为150 nm(80 nm)和25 nm(12 nm)。我们的演示为纯二次孤子的产生铺平了道路,这是对耗散克尔孤子频率梳的极大补充,可用于扩展有趣的非线性应用。