论文标题
石墨烯异质结构的高谐波生成增强
High-harmonic generation enhancement with graphene heterostructures
论文作者
论文摘要
我们研究了由金属纳米纤维组成的石墨烯异质结构中的高谐波产生,这些金属纳米纤维由氧化铝的几纳米层或己酮硝化氢硼的原子单层分离。相对于外部施加的抽水,纳米骨本在石墨烯层的近场扩增了近场,从而使我们能够在碳单层中观察到第三次和第五次谐波,并在中型粉刷中适度的泵功率。我们研究了非线性信号对色带宽度和间隔厚度的依赖性,以及泵的功率和极化,并分别相对于裸露的石墨烯,分别显示出增强因子,分别达到1600和4100,分别为第三和第五谐波产生。我们的工作支持使用石墨烯异质结构来选择性增强特定的非线性感兴趣过程,这是纳米级非线性设备设计的重要能力。
We investigate high-harmonic generation in graphene heterostructures consisting of metallic nanoribbons separated from a graphene sheet by either a few-nanometer layer of aluminum oxide or an atomic monolayer of hexagonal boron nitride. The nanoribbons amplify the near-field at the graphene layer relative to the externally applied pumping, thus allowing us to observe third- and fifth-harmonic generation in the carbon monolayer at modest pump powers in the mid-infrared. We study the dependence of the nonlinear signals on the ribbon width and spacer thickness, as well as pump power and polarization, and demonstrate enhancement factors relative to bare graphene reaching 1600 and 4100 for third- and fifth-harmonic generation, respectively. Our work supports the use of graphene heterostructures to selectively enhance specific nonlinear processes of interest, an essential capability for the design of nanoscale nonlinear devices.