Chi Jiao, Liu Hongjun, Wang Zhaolu, Huang Nan
Opt Express. 2020 Feb 17;28(4):4529-4540. doi: 10.1364/OE.385450.
The plasmonic metamaterials and metasurfaces play a critical role in manipulating lights in the mid-infrared spectral region. Here, we first propose a novel plasmonic chiral structure with the giant optical activity in the mid-infrared spectral region. The chiral structure consists of the moiré patterns, which are formed by stacking double-layer graphene nanoribbons with a relative in-plane rotation angle. It is demonstrated that the graphene-based plasmonic structure with moiré patterns exhibits the strong circular dichroism. The giant chiroptical response can be precisely controlled by changing the rotation angle and Fermi level of graphene. Furthermore, a dielectric interlayer is inserted between two layers of graphene to obtain the stronger circular dichroism. Impressively, the strongest circular dichroism can reach 5.94 deg at 13.6 µm when the thickness of dielectric interlayer is 20 nm. The proposed structure with graphene-based moiré patterns can be superior to conventional graphene chiral metamaterials due to some advantage of rotation-dependent chirality, flexible tunability and cost-effective fabrication. It will advance many essential mid-infrared applications, such as chiral sensors, thermal imaging and chiroptical detectors.
等离子体超材料和超表面在中红外光谱区域的光操控中起着关键作用。在此,我们首次提出一种在中红外光谱区域具有巨大光学活性的新型等离子体手性结构。该手性结构由莫尔条纹图案组成,这些图案是通过将双层石墨烯纳米带以相对面内旋转角堆叠而成。结果表明,具有莫尔条纹图案的基于石墨烯的等离子体结构表现出强烈的圆二色性。通过改变石墨烯的旋转角和费米能级,可以精确控制巨大的手性光学响应。此外,在两层石墨烯之间插入一个介电层以获得更强的圆二色性。令人印象深刻的是,当介电层厚度为20 nm时,在13.6 µm处最强圆二色性可达5.94度。所提出的基于石墨烯莫尔条纹图案的结构由于具有旋转依赖手性、灵活可调性和低成本制造等优点,可能优于传统的石墨烯手性超材料。它将推动许多重要的中红外应用,如手性传感器、热成像和手性光学探测器。