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首页> 外文期刊>Journal of optics >Tunable and broadband coherent perfect absorbers with nonlinear and amplification performance based on asymmetric bifacial graphene metasurfaces
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Tunable and broadband coherent perfect absorbers with nonlinear and amplification performance based on asymmetric bifacial graphene metasurfaces

机译:基于非对称双环石墨烯元核的非线性和扩增性能的可调谐和宽带相干性接触器

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We present an asymmetric bifacial graphene metasurface to realize tunable and broadband coherent perfect absorption (CPA) at terahertz (THz) frequencies. The proposed design is composed of two dissimilar graphene square patch metasurfaces stacked over an ultrathin dielectric substrate. Nonlinear CPA performance without resorting to optical nonlinearities and amplification are demonstrated based on wave interference phenomena taking place along and inside this subwavelength structure. Broadband asymmetric reflection from opposite directions is obtained in the case of single wave illumination. This response acts as a precursor to the presented tunable and broadband nonlinear CPA performance and the inverse response to absorption, i.e. amplification, when an additional input wave coherently interacts with the opposite propagating incident wave. The proposed ultrathin broadband CPA device is expected to be a vital component to several new on-chip THz communication devices, such as optical modulators, sensors, photodetectors, and all-optical small-signal amplifiers.
机译:我们介绍了不对称的双歧曲石墨烯元表面,以实现Terahertz(THz)频率的可调和宽带相干的完美吸收(CPA)。所提出的设计由两个不同的石墨烯贴片元件组成,堆叠在超薄介电基板上。非线性CPA性能而不诉诸光学非线性和扩增,基于沿着该亚主波长结构发生的波浪干扰现象来证明。在单波照射的情况下获得来自相反方向的宽带非对称反射。该响应作为所呈现的可调谐和宽带非线性CPA性能的前体和对吸收的反应响应,即放大,当附加输入波与相反的传播入射波相干地相互作用时。建议的超薄宽带CPA设备预计将成为几个新的片上THz通信设备的重要组成部分,例如光调制器,传感器,光电探测器和全光学小信号放大器。

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