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Highly efficient terahertz wave modulators by photo-excitation of organics/silicon bilayers

机译:通过有机物/硅双层的光激发实现高效太赫兹波调制器

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Using hybrid bilayer systems comprising a molecular organic semiconductor and silicon, we achieve optically controllable active terahertz (THz) modulators that exhibit extremely high modulation efficiencies. A modulation efficiency of 98% is achieved from thermally annealed C60/silicon bilayers, due to the rapid photo-induced electron transfer from the excited states of the silicon onto the C60 layer. Furthermore, we demonstrate the broadband modulation of THz waves. The cut-off condition of the system that is determined by the formation of efficient charge separation by the photo-excitation is highly variable, changing the system from insulating to metallic. The phenomenon enables an extremely high modulation bandwidth and rates of electromagnetic waves of interest. The realization of near-perfect modulation efficiency in THz frequencies opens up the possibilities of utilizing active modulators for THz spectroscopy and communications.
机译:使用包含分子有机半导体和硅的混合双层系统,我们实现了具有极高调制效率的光控有源太赫兹(THz)调制器。由于从硅的激发态到C60层的快速光感应电子转移,从热退火的C60 /硅双层中可实现98%的调制效率。此外,我们演示了太赫兹波的宽带调制。由光激发形成有效的电荷分离所决定的系统截止条件是高度可变的,从而使系统从绝缘变为金属。这种现象可以实现极高的调制带宽和感兴趣的电磁波速率。在太赫兹频率中实现近乎完美的调制效率,开辟了将有源调制器用于太赫兹光谱和通信的可能性。

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