论文标题

与CMOS兼容的微环谐振器集成的2D层氧化石墨烯膜增强了四波混合

Enhanced four-wave-mixing with 2D layered graphene oxide films integrated with CMOS compatible micro-ring resonators

论文作者

Wu, Jiayang, Yang, Yunyi, Qu, Yang, Jia, Linnan, Zhang, Yuning, Xu, Xingyuan, Chu, Sai T., Little, Brent E., Morandotti, Roberto, Jia, Baohua, Moss, David J.

论文摘要

分层的2D石墨烯(GO)膜与微孔谐振器(MRR)集成在一起,以实验表明以四波混合(FWM)的形式表明了增强的非线性光学元件。均匀涂层和图案化的GO膜均使用大面积,自由转移,逐层GO涂层以及光刻的涂层并提起涂层的过程中兼容掺杂的二氧化硅MRR集成在CMOS兼容掺杂的二氧化硅MRR上,从而获得了膜厚度,放置和长度的精确控制。 KERR非线性高和GO膜的低损失与MRRS内的强光相互作用相结合,导致杂种MRR的FWM效率显着提高。详细的FWM测量值以不同的泵功率和共振的波长进行,该均匀涂层的MRR和具有10至50层GO的图案设备的均匀涂层MRR。实验结果表明,与理论的一致性很好,对于用1层GO涂层的MRR涂层的FWM转换效率(CE),对于具有50层GO的图案设备,MRR均匀地涂有MRR。通过将测量的CE拟合为具有不同GO层的设备的泵功率的函数,我们还提取了第三阶非线性对层数和泵功率的依赖性,从而揭示了有关层次GO膜从2D单层膜的演变而来的有趣的物理见解。这些结果证实了与2D分层GO膜合并的集成光子谐振器的高非线性光学性能。

Layered 2D graphene oxide (GO) films are integrated with microring resonators (MRRs) to experimentally demonstrate enhanced nonlinear optics in the form of four wave mixing (FWM). Both uniformly coated and patterned GO films are integrated on CMOS compatible doped silica MRRs using a large area, transfer free, layer by layer GO coating method together with photolithography and lift off processes, yielding precise control of the film thickness, placement, and coating length. The high Kerr nonlinearity and low loss of the GO films combined with the strong light matter interaction within the MRRs results in a significant improvement in the FWM efficiency in the hybrid MRRs. Detailed FWM measurements are performed at different pump powers and resonant wavelengths for the uniformly coated MRRs with 1 to 5 layers of GO as well as the patterned devices with 10 to 50 layers of GO. The experimental results show good agreement with theory, achieving up to 7.6 dB enhancement in the FWM conversion efficiency (CE) for an MRR uniformly coated with 1 layer of GO and 10.3 dB for a patterned device with 50 layers of GO. By fitting the measured CE as a function of pump power for devices with different numbers of GO layers, we also extract the dependence of the third-order nonlinearity on layer number and pump power, revealing interesting physical insights about the evolution of the layered GO films from 2D monolayers to quasi bulk like behavior. These results confirm the high nonlinear optical performance of integrated photonic resonators incorporated with 2D layered GO films.

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