Tasolamprou Anna C, Koulouklidis Anastasios D, Daskalaki Christina, Mavidis Charalampos P, Kenanakis George, Deligeorgis George, Viskadourakis Zacharias, Kuzhir Polina, Tzortzakis Stelios, Kafesaki Maria, Economou Eleftherios N, Soukoulis Costas M
Institute of Electronic Structure and Laser, FORTH, 70013 Heraklion, Crete, Greece.
Department of Materials Science and Technology, University of Crete, 70013 Heraklion, Crete, Greece.
ACS Photonics. 2019 Mar 20;6(3):720-727. doi: 10.1021/acsphotonics.8b01595. Epub 2019 Feb 14.
We present an experimental demonstration and interpretation of an ultrafast optically tunable, graphene-based thin film absorption modulator for operation in the THz regime. The graphene-based component consists of a uniform CVD-grown graphene sheet stacked on an SU-8 dielectric substrate that is grounded by a metallic ground plate. The structure shows enhanced absorption originating from constructive interference of the impinging and reflected waves at the absorbing graphene sheet. The modulation of this absorption, which is demonstrated via a THz time-domain spectroscopy setup, is achieved by applying an optical pump signal, which modifies the conductivity of the graphene sheet. We report an ultrafast (on the order of few ps) absorption modulation on the order of 40% upon photoexcitation. Our results provide evidence that the optical pump excitation results in the degradation of the graphene THz conductivity, which is connected with the generation of hot carriers, the increase of the electronic temperature, and the dominant increase of the scattering rate over the carrier concentration as found in highly doped samples.
我们展示了一种用于太赫兹(THz)波段的基于石墨烯的超快光学可调谐薄膜吸收调制器的实验演示及解释。该基于石墨烯的组件由堆叠在SU - 8介电基板上的均匀化学气相沉积(CVD)生长的石墨烯片组成,SU - 8介电基板由金属接地平板接地。该结构显示出增强的吸收,这源于在吸收性石墨烯片处入射波和反射波的相长干涉。通过太赫兹时域光谱装置演示的这种吸收调制,是通过施加光泵浦信号来实现的,该信号会改变石墨烯片的电导率。我们报告了光激发时约40%的超快(皮秒量级)吸收调制。我们的结果表明,光泵浦激发导致石墨烯太赫兹电导率下降,这与热载流子的产生、电子温度的升高以及在高掺杂样品中发现的散射速率相对于载流子浓度的显著增加有关。