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Optical field terahertz amplitude modulation by graphene nanoribbons

机译:光场太赫兹调幅石墨烯带的制作都

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摘要

In this study, first-principles time-dependent density functional theory calculations were used to demonstrate the possibility to modulate the amplitude of the optical electric field (E-field) near a semiconducting graphene nanoribbon. A significant enhancement of the optical E-field was observed 3.34 angstrom above the graphene nanoribbon sheet, with an amplitude modulation of approximately 100 fs, which corresponds to a frequency of 10 THz. In general, a six-fold E-field enhancement could be obtained, which means that the power of the obtained THz is about 36 times that of incident UV light. We suggest the use of semiconducting graphene nanoribbons for converting visible and UV light into a THz signal.
机译:在这项研究中,采用基于时间密度泛函理论计算说明调整的可能性光学电场的振幅(左)半导体石墨烯nanoribbon附近。显著增强的光学电3.34埃以上观察到石墨烯nanoribbon表,调幅大约100 fs,对应于一个10太赫兹的频率。电增强可以获得,它意味着得到太赫兹的力量入射紫外线的36倍。使用半导体石墨烯带的制作都可见光和紫外光转化为太赫兹信号。

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