Jin Sichen, Wang Xinke, Han Peng, Sun Wenfeng, Feng Shengfei, Ye Jiasheng, Zhang Chao, Zhang Yan
Opt Express. 2019 Apr 15;27(8):11137-11151. doi: 10.1364/OE.27.011137.
We present a theoretical study of terahertz (THz) radiation induced by surface plasmon polaritons (SPPs) on a graphene layer under modulation by a surface acoustic wave (SAW). In our gedanken experiment, SPPs are excited by an electron beam moving on a graphene layer situated on a piezoelectric MoS flake. Under modulation by the SAW field, charge carriers are periodically distributed over the MoS flake, and this causes periodically distributed permittivity. The periodic permittivity structure of the MoS flake folds the SPP dispersion curve back into the center of the first Brillouin zone, in a manner analogous to a crystal, leading to THz radiation emission with conservation of the wavevectors between the SPPs and the electromagnetic waves. Both the frequency and the intensity of the THz radiation are tuned by adjusting the chemical potential of the graphene layer, the MoS flake doping density, and the wavelength and period of the external SAW field. A maximum energy conversion efficiency as high as ninety percent was obtained from our model calculations. These results indicate an opportunity to develop highly tunable and integratable THz sources based on graphene devices.
我们对表面声波(SAW)调制下石墨烯层上表面等离激元极化激元(SPP)诱导产生太赫兹(THz)辐射进行了理论研究。在我们的思想实验中,SPP由在位于压电MoS薄片上的石墨烯层上移动的电子束激发。在SAW场的调制下,电荷载流子在MoS薄片上周期性分布,这导致了周期性分布的介电常数。MoS薄片的周期性介电常数结构将SPP色散曲线折叠回第一布里渊区中心,其方式类似于晶体,从而导致THz辐射发射,且SPP与电磁波之间的波矢守恒。通过调整石墨烯层的化学势、MoS薄片的掺杂密度以及外部SAW场的波长和周期,可以调节THz辐射的频率和强度。我们的模型计算得到了高达90%的最大能量转换效率。这些结果表明有机会基于石墨烯器件开发高度可调谐且可集成的THz源。