论文标题
与2D石墨烯氧化物膜相结合的氮化硅波导中增强的自相调制
Enhanced self-phase modulation in silicon nitride waveguides integrated with 2D graphene oxide films
论文作者
论文摘要
我们在实验上证明了与2D石墨烯(GO)膜集成的氮化硅(SI3N4)中的自相调制(SPM)增强。使用基于溶液的无传输涂层方法将GO膜整合到SI3N4波导上,该方法可以精确控制膜厚度。使用Picsecond和飞秒光脉冲进行详细的SPM测量。由于GO的较高的Kerr非线性,与未涂层的波导相比,混合波导显示出显着改善的光谱宽度,对于具有2层GO的设备,宽阔的系数最高为〜3.4。通过将实验结果与理论拟合,我们可以提高波导非线性参数的改进,高达18.4,而KERR系数(N2)的GO(N2)比Si3n4高约5个数量级。最后,我们为GO膜长度,涂料位置及其饱和吸收对SPM性能的影响提供了理论分析。这些结果验证了片上整合2D GO膜的有效性,以增强SI3N4设备的非线性光学性能。
We experimentally demonstrate enhanced self-phase modulation (SPM) in silicon nitride (Si3N4) waveguides integrated with 2D graphene oxide (GO) films. GO films are integrated onto Si3N4 waveguides using a solution-based, transfer-free coating method that enables precise control of the film thickness. Detailed SPM measurements are carried out using both picosecond and femtosecond optical pulses. Owing to the high Kerr nonlinearity of GO, the hybrid waveguides show significantly improved spectral broadening compared to the uncoated waveguide, achieving a broadening factor of up to ~3.4 for a device with 2 layers of GO. By fitting the experimental results with theory, we obtain an improvement in the waveguide nonlinear parameter by a factor of up to 18.4 and a Kerr coefficient (n2) of GO that is about 5 orders of magnitude higher than Si3N4. Finally, we provide a theoretical analysis for the influence of GO film length, coating position, and its saturable absorption on the SPM performance. These results verify the effectiveness of on-chip integrating 2D GO films to enhance the nonlinear optical performance of Si3N4 devices.