论文标题
通过与2D石墨烯氧化石墨烯膜整合的硅纳米线中的飞秒光学脉冲通过自相调制增强的光谱扩大
Enhanced spectral broadening via self-phase modulation with femtosecond optical pulses in silicon nanowires integrated with 2D graphene oxide films
论文作者
论文摘要
我们通过实验表明,通过与二维(2d)氧化石墨烯(GO)膜集成的硅纳米菌波导,通过硅在绝缘子(SOI)纳米线波导中传播时,飞秒光脉冲的光谱扩大增强。由于SOI纳米线与具有较高Kerr非线性的GO膜之间的强大模式重叠,因此在混合波导中的自相度调制(SPM)过程得到了显着增强,从而大大改善了雌性的光脉冲光谱宽度。一种基于溶液的无传输涂层方法用于将GO膜整合到SOI纳米线上,并精确控制膜厚度。使用飞秒光脉冲进行了详细的SPM测量,对于具有0.4毫米长的2层GO的设备,达到了〜4.3的扩展因子。通过将实验结果与理论拟合,我们相对于未涂层的波导,我们可以提高波导非线性参数〜3.5的因子〜3.5的因子,并提高了有效的非线性值(FOM)。最后,我们讨论了GO膜长度对频谱拓宽的影响,并比较了与GO膜涂层的不同集成波导的非线性光学性能。这些结果证实了与2D GO膜集成的硅设备的改进的非线性光学外观。
We experimentally demonstrate enhanced spectral broadening of femtosecond optical pulses af-ter propagation through silicon-on-insulator (SOI) nanowire waveguides integrated with two-dimensional (2D) graphene oxide (GO) films. Owing to the strong mode overlap between the SOI nanowires and the GO films with a high Kerr nonlinearity, the self-phase modulation (SPM) process in the hybrid waveguides is significantly enhanced, resulting in greatly improved spectral broadening of the femtosecond optical pulses. A solution-based, transfer-free coating method is used to integrate GO films onto the SOI nanowires with precise control of the film thickness. Detailed SPM measurements using femtosecond optical pulses are carried out, achieving a broadening factor of up to ~4.3 for a device with 0.4-mm-long, 2 layers of GO. By fit-ting the experimental results with theory, we obtain an improvement in the waveguide nonlin-ear parameter by a factor of ~3.5 and the effective nonlinear figure of merit (FOM) by a factor of ~3.8, relative to the uncoated waveguide. Finally, we discuss the influence of GO film length on the spectral broadening and compare the nonlinear optical performance of different integrated waveguides coated with GO films. These results confirm the improved nonlinear optical per-formance for silicon devices integrated with 2D GO films.