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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >All-optical tunable notch filter by use of Kerr nonlinearity in the graphene microribbon array
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All-optical tunable notch filter by use of Kerr nonlinearity in the graphene microribbon array

机译:利用石墨烯微带阵列中的Kerr非线性的全光学可调谐陷波滤波器

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摘要

We report a numerical study on the optical tuning of a notch filter comprised of an array of engineered graphene microribbons. The notch on the normal incidence transmission spectra is created due to light-plasmon coupling in graphene. Besides investigating the effect of structural parameters and electrostatic gating on the graphene plasmon excitation, we particularly examine the modulation of transmission with incident light intensity based on the significant optical Kerr effect in graphene. Our numerical simulation with the finite difference time domain numerical method reveals that considerable variation in the transmission up to 12.15 dB can be effectively achieved by increasing the irradiance intensity up to 0.68 MW/cm~2, which is adequately below the graphene threshold damage. The presence of well-known techniques to fabricate and characterize graphene sheets such as chemical vapor deposition and Raman spectroscopy makes such a one-atom-thick terahertz filter feasible.
机译:我们报告了对陷波滤波器的光学调谐的数值研究,陷波滤波器由一系列工程石墨烯微带组成。由于石墨烯中的光子-等离子体耦合,在法向入射透射光谱上产生了缺口。除了研究结构参数和静电门控对石墨烯等离子体激元激发的影响外,我们还基于石墨烯中显着的光学克尔效应,特别研究了入射光强度对透射的调制。我们使用时域有限差分法进行的数值模拟表明,通过将辐照强度提高到0.68 MW / cm〜2,可以有效地实现高达12.15 dB的透射率的相当大的变化,该强度足以低于石墨烯阈值损伤。制造和表征石墨烯片的众所周知的技术(例如化学气相沉积和拉曼光谱法)的存在使这种单原子厚的太赫兹滤光片变得可行。

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