论文标题

与氧化石墨烯膜整合的SIN纳米线中增强的四波混合和3阶光学非线性

Enhanced four-wave-mixing and 3rd order optical nonlinearity in SiN nanowires integrated with graphene oxide films

论文作者

Qu, Yang, Wu, Jiayang, Yang, Yunyi, Zhang, Yuning, Liang, Yao, Dirani, Houssein El, Crochemore, Romain, Demongodinc, Pierre, Sciancalepore, Corrado, Grillet, Christian, Monat, Christelle, Jia, Baohua, Moss, David J.

论文摘要

分层的2D氧化石墨烯(GO)膜与氮化硅(SIN)波导集成,通过四波混合(FWM)实验证明了Kerr非线性增强。由于SIN波导与高度非线性GO膜之间的强光相互作用,杂交波导的FWM性能得到了显着改善。具有均匀涂层和图案化的GO膜的SIN波导是根据不传输的图层GO涂层以及标准光刻图和提升过程制造的,从而获得了膜厚度,放置和涂层长度的精确控制。针对具有不同数量的GO层和不同泵功率的制造设备进行了详细的FWM测量。通过优化非线性和损失之间的权衡,对于均匀涂层设备的FWM转换效率为7.3 dB的FWM转换效率具有显着提高,该设备具有1层GO,带有5层GO的图案设备。我们还为图案设备获得了FWM带宽的显着增加。对模式长度和位置对FWM性能的影响进行详细分析。基于FWM测量值,还提取了GOS三阶非线性对层和泵功率的依赖性,从而揭示了有关2D层次GO膜的有趣的物理见解。最后,我们获得了杂交波导的有效非线性参数的增强,超过100倍。这些结果通过结合2D层的GO膜来验证可实现的SIN波导的增强的非线性光学性能。

Layered 2D graphene oxide (GO) films are integrated with silicon nitride (SiN) waveguides to experimentally demonstrate an enhanced Kerr nonlinearity via four wave mixing (FWM). Owing to the strong light matter interaction between the SiN waveguides and the highly nonlinear GO films, the FWM performance of the hybrid waveguides is significantly improved. SiN waveguides with both uniformly coated and patterned GO films are fabricated based on a transfer free, layer by layer GO coating method together with standard photolithography and lift off processes, yielding precise control of the film thickness, placement and coating length. Detailed FWM measurements are carried out for the fabricated devices with different numbers of GO layers and at different pump powers. By optimizing the trade off between the nonlinearity and loss, we obtain a significant improvement in the FWM conversion efficiency of 7.3 dB for a uniformly coated device with 1 layer of GO and 9.1 dB for a patterned device with 5 layers of GO. We also obtain a significant increase in FWM bandwidth for the patterned devices. A detailed analysis of the influence of pattern length and position on the FWM performance is performed. Based on the FWM measurements, the dependence of GOs third-order nonlinearity on layer number and pump power is also extracted, revealing interesting physical insights about the 2D layered GO films. Finally, we obtain an enhancement in the effective nonlinear parameter of the hybrid waveguides by over a factor of 100. These results verify the enhanced nonlinear optical performance of SiN waveguides achievable by incorporating 2D layered GO films.

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