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Graphene based All-Optical Spatial Terahertz Modulator

机译:基于石墨烯的全光空间太赫兹调制器

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摘要

We demonstrate an all-optical terahertz modulator based on single-layer graphene on germanium (GOG), which can be driven by a 1.55 μm CW laser with a low-level photodoping power. Both the static and dynamic THz transmission modulation experiments were carried out. A spectrally wide-band modulation of the THz transmission is obtained in a frequency range from 0.25 to 1 THz, and a modulation depth of 94% can be achieved if proper pump power is applied. The modulation speed of the modulator was measured to be ~200 KHz using a 340 GHz carrier. A theoretical model is proposed for the modulator and the calculation results indicate that the enhanced THz modulation is mainly due to the third order nonlinear effect in the optical conductivity of the graphene monolayer.
机译:我们演示了一种基于锗(GOG)上单层石墨烯的全光太赫兹调制器,该调制器可由具有低水平光掺杂功率的1.55μm连续波激光器驱动。进行了静态和动态太赫兹传输调制实验。在0.25到1 THz的频率范围内可获得THz传输的频谱宽带调制,如果施加适当的泵浦功率,则可实现94%的调制深度。使用340 GHz载波测得的调制器的调制速度约为200 KHz。提出了调制器的理论模型,计算结果表明,增强的太赫兹调制主要归因于石墨烯单层光导率的三阶非线性效应。

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