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Enhanced polarization-sensitive terahertz emission from vertically grown graphene by a dynamical photon drag effect

机译:增强polarization-sensitive太赫兹发射从垂直生长石墨烯动力光子拖拽效果

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Improving terahertz (THz) emission from graphene is a challenge for graphene-based THz photonics as graphene demonstrates a weak light-matter interaction. With a unique ultra-black surface structure, vertically grown graphene (VGG) is proposed to enhance the light-matter interaction and further enhance THz emission. Herein, enhanced THz radiation is observed by THz time-domain emission spectroscopy from VGG compared with single-layer graphene. The radiated THz amplitude shows a linear dependence on pump power, which demonstrates a second order nonlinear effect. Considering the symmetry of VGG on a substrate, we can exclude the optical rectification effect and photogalvanic effect (PGE) by the D-6h point group with centrosymmetry. Thus we analyze the transient photocurrent related to THz emission only by the photon drag effect (PDE). The polarization-sensitive THz radiation signals are wave-vector reliant and demonstrate cos 2 phi and sin 2 phi dependence on the polarization angles of the pump laser. This is consistent with the theoretical analysis of PDE. Our results show the enhanced, ultrafast, broadband THz radiation property of VGG, which paves the way for high performance THz emitters and THz detectors based on graphene materials.
机译:从石墨烯提高太赫兹(太赫兹)排放是一个挑战对于石墨烯太赫兹光子随着石墨烯演示了一个弱件轻松事交互。(VGG)结构,垂直生长石墨烯提出了加强件轻松事交互并进一步提高太赫兹发射。提高太赫兹辐射是观察到太赫兹从VGG时域发射光谱学相比之下,单层石墨烯。太赫兹振幅显示了线性依赖于泵力量,它演示了一个二阶非线性效应。衬底上,我们可以排除光学整改效果和photogalvanic效果(铂族元素)D-6h点组中心对称。光电流与太赫兹发射的光子阻力效应(PDE)。polarization-sensitive太赫兹辐射信号波矢和演示cosφ2的依赖罪2φ偏振角的依赖泵的激光。PDE的理论分析。增强、超速、宽带太赫兹辐射VGG属性,为高铺平了道路基于太赫兹发射器和太赫兹探测器性能在石墨烯材料。

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