论文标题
具有先进电磁功能的非线性石墨烯元面
Nonlinear graphene metasurfaces with advanced electromagnetic functionalities
论文作者
论文摘要
光学非线性效应可以提供不同的晚期电磁功能,例如波浪混合和相结合,可以应用于各种新应用。但是,这些影响通常遭受非常弱的性质,需要高输入强度值才能激发。有趣的是,可以利用石墨烯的大三阶非线性以及由于其等离子行为引起的强场限制,可用于增强红外线(IR)和Terahertz(THZ)频率的几种相对弱非线性效应。为了实现这一目标,在这项工作中介绍了各种非线性石墨烯元面积,以有效提高不同的光学非线性效应的效率,因此,降低了激发所需的输入强度。特别是,我们将通过使用非线性跨表面,由图案化的石墨烯丝带,介电介电中层和金属反射器组成的非线性跨表面来提高四波混合(FWM)的效率(FWM)的效率。我们还证明,可以通过使用替代石墨烯非线性跨表面来增强自相度调制(SPM)非线性过程,作为连贯的完美吸收剂运行,从而导致相干完美吸收的谐振频率(CPA)的谐振频率发生了明显的转移,因为这种结构的效果增加了Imping Indisting Wave的输入强度,这会增加。该属性将提供一种强大的机制来动态调整并切换CPA过程。此外,将出于单个石墨烯单层膜可以实现强烈的负反射和折射,这是由于增强了另一种非线性过程(称为相结合)。该非线性过程被设想用于构建具有下波长分辨率的完美成像装置。
The optical nonlinear effects can provide different advanced electromagnetic functionalities, such as wave mixing and phase conjugation, which can be applied in a variety of new applications. However, these effects usually suffer from extremely weak nature and require high input intensity values in order to be excited. Interestingly, the large third order nonlinearity of graphene, along with the strong field confinement stemming from its plasmonic behavior, can be utilized to enhance several relative weak nonlinear effects at infrared (IR) and terahertz (THz) frequencies. Towards this goal, various nonlinear graphene metasurfaces are presented in this work to effectively increase the efficiency of different optical nonlinear effects and, as a result, decrease the required input intensity needed to be excited. In particular, we will show that the efficiency of four-wave mixing (FWM) can be improved by several orders of magnitude by using a nonlinear metasurface composed of patterned graphene ribbons, a dielectric interlayer, and a metallic reflector acting as substrate. We also demonstrate that the self-phase modulation (SPM) nonlinear process can be enhanced by using an alternative graphene nonlinear metasurface, operating as coherent perfect absorber, leading to a pronounced shift in the resonant frequency of the coherent perfect absorption (CPA) effect of this structure as the input intensity of the impinging incident waves is increased. This property will provide a robust mechanism to dynamically tune and switch the CPA process. Furthermore, it will be presented that strong negative reflection and refraction can be achieved by a single graphene monolayer film due to the enhancement of another nonlinear process, known as phase conjugation. This nonlinear process is envisioned to be used in the construction of a perfect imaging device with subwavelength resolution.