论文标题

与氧化石墨烯分层膜集成的硅纳米线在1550nm处增强的非线性光学构型晶状体形式

Enhanced nonlinear optical figure-of-merit at 1550nm for silicon nanowires integrated with graphene oxide layered films

论文作者

Zhang, Yuning, Wu, Jiayang, Yang, Yunyi, Qu, Yang, Jia, Linnan, Moein, Tania, Jia, Baohua, Moss, David J.

论文摘要

分层的2D GO膜与硅在绝缘体(SOI)纳米线波导上集成,以实验证明通过自相度调制(SPM)观察到的增强的Kerr非线性。 GO膜使用大面积的SOI纳米线整合,逐层涂层方法不传输,从而可以精确控制膜厚度。胶片放置和涂料长度通过在SOI纳米线的二氧化硅覆盖层中打开窗户来控制。由于SOI纳米线与高度非线性GO膜之间的强大模式重叠,因此杂交波导的Kerr非线性显着增强。使用皮秒光学脉冲的详细SPM测量结果显示,涂有2.2毫米长的1至3层GO的SOI纳米线的光谱扩大增强,并具有5​​至20层GO的薄膜。通过将实验结果与理论拟合,获得了N2对层数和脉冲能量的依赖性,显示出有趣的物理见解和层次GO膜的趋势,从2D单层到类似的类似行为。最后,我们表明,通过使用GO膜涂层SOI纳米线,SOI纳米线的有效非线性参数增加了16倍,有效的非线性功绩(FOM)增加了约20倍,至大于5次。这些结果揭示了使用分层GO膜来改善硅质光学性能的强大潜力。

Layered 2D GO films are integrated with silicon on insulator (SOI) nanowire waveguides to experimentally demonstrate an enhanced Kerr nonlinearity, observed through selfphase modulation (SPM). The GO films are integrated with SOI nanowires using a large area, transfer free, layer by layer coating method that yields precise control of the film thickness. The film placement and coating length are controlled by opening windows in the silica cladding of the SOI nanowires. Owing to the strong mode overlap between the SOI nanowires and the highly nonlinear GO films, the Kerr nonlinearity of the hybrid waveguides is significantly enhanced. Detailed SPM measurements using picosecond optical pulses show significant spectral broadening enhancement for SOI nanowires coated with 2.2 mm long films of 1 to 3 layers of GO, and 0.4 mm long films with 5 to 20 layers of GO. By fitting the experimental results with theory, the dependence of the n2 for GO on layer number and pulse energy is obtained, showing interesting physical insights and trends of the layered GO films from 2D monolayers to quasi bulk like behavior. Finally, we show that by coating SOI nanowires with GO films the effective nonlinear parameter of SOI nanowires is increased 16 times, with the effective nonlinear figure of merit (FOM) increasing by about 20 times to greater than 5. These results reveal the strong potential of using layered GO films to improve the Kerr nonlinear optical performance of silicon photonic devices.

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