Zhou Renlong, Yang Sa, Liu Dan, Cao Guangtao
Opt Express. 2017 Dec 11;25(25):31478-31491. doi: 10.1364/OE.25.031478.
The confined surface plasmon of fundamental wave and second harmonic wave (SHW) are investigated in graphene grating structure. The linear-optical absorption spectra with various fermi energy and carrier mobility are investigated with the finite difference time domain (FDTD) simulations and coupled mode theory (CMT). Based on the CMT, a theoretical model for the graphene grating is established to study the spectrum features of fundamental wave. The lifetimes of linear-optical resonant modes in theoretical model are investigated through the theoretical fitting of exact values in simulation, which are tunable with both the fermi energy and carrier mobility. We also have investigated the second-order nonlinearity of graphene grating by introducing the second-order nonlinear source. The proposed configuration and method are useful for research of the absorption, local field enhancement factor, lifetime of light, and nonlinear optical processes in highly integrated graphene photoelectric devices.
研究了石墨烯光栅结构中基波和二次谐波的受限表面等离子体。利用时域有限差分(FDTD)模拟和耦合模理论(CMT)研究了具有不同费米能量和载流子迁移率的线性光学吸收光谱。基于CMT,建立了石墨烯光栅的理论模型以研究基波的光谱特性。通过对模拟中的精确值进行理论拟合,研究了理论模型中线性光学共振模式的寿命,其可通过费米能量和载流子迁移率进行调节。我们还通过引入二阶非线性源研究了石墨烯光栅的二阶非线性。所提出的结构和方法对于研究高度集成的石墨烯光电器件中的吸收、局部场增强因子、光的寿命和非线性光学过程非常有用。