Luo Rui, Jiang Haowei, Rogers Steven, Liang Hanxiao, He Yang, Lin Qiang
Opt Express. 2017 Oct 2;25(20):24531-24539. doi: 10.1364/OE.25.024531.
Nonlinear wavelength conversion is essential for many classical and quantum pho-tonic applications. The underlying second-order nonlinear optical processes, however, generally exhibit limited spectral bandwidths that impact their application potential. Here we use a high-Q X-cut lithium niobate microdisk resonator to demonstrate both second-harmonic generation and spontaneous parametric down-conversion on chip. In particular, our lithium niobate microresonator, with its wide-range cyclic phase matching and rich optical mode structures, is able to achieve ultra-broadband spontaneous parametric down-conversion, with a bandwidth over 400 nm, inferred from recorded spectra of the down-converted photons. The produced biphoton pairs exhibit strong temporal correlation, with a coincidence-to-accidental ratio measured to be 43.1. Our device is promising for integrated quantum photonics where optical frequency could be used as a degree of freedom for signal processing.
非线性波长转换对于许多经典和量子光子应用至关重要。然而,潜在的二阶非线性光学过程通常表现出有限的光谱带宽,这影响了它们的应用潜力。在此,我们使用一个高Q值的X切铌酸锂微盘谐振器在芯片上演示了二次谐波产生和自发参量下转换。特别是,我们的铌酸锂微谐振器具有宽范围的循环相位匹配和丰富的光学模式结构,能够实现超宽带自发参量下转换,根据记录的下转换光子光谱推断,带宽超过400nm。产生的双光子对表现出很强的时间相关性,测得的符合与偶然比为43.1。我们的器件对于集成量子光子学很有前景,在集成量子光子学中,光频率可作为信号处理的一个自由度。