Khattak Muhammad Irfan, Ullah Zaka, Al-Hasan Mu'ath, Sheikh Fawad
Opt Express. 2020 Dec 7;28(25):37860-37878. doi: 10.1364/OE.411014.
Graphene devices have been widely explored for photonic applications, as they serve as promising candidates for controlling light interactions resulting in extreme confinement and tunability of graphene plasmons. The ubiquitous presence of surface crumples in graphene, very less is known on how the crumples in graphene can affect surface plasmon resonance and its absorption properties. In this article, a novel approach based on the crumpled graphene is investigated to realize broadband tunability of plasmonic resonance through the mechanical reconfiguration of crumpled graphene resonators. The mechanical reconfiguration of graphene crumples combined with dual electrostatic gating (i.e. raising the Fermi level from 0.2-0.4 eV) of graphene serves as a tuning knob enabling broad spectral tunability of plasmonic resonance in the wavelength range of 14-24 µm. The crumpled region in the resonators exhibits an effective trapping potential where it extremely confines the surface plasmonic field on the surfaces of crumples providing localized surface plasmon resonance at the apices of these crumples. Finally, to achieve near-unity absorption >99% at the resonance wavelengths (17 µm and 22 µm) crumpled graphene resonators are loaded with four ring shaped metamaterials which result in the enhanced near-field intensity of ≈1.4×10. This study delivers insight into the tunability of crumpled graphene and their coupling mechanism by providing a new platform for the flexible and gate tunable graphene sensors at the infrared region.
石墨烯器件已被广泛用于光子学应用,因为它们有望控制光相互作用,从而实现石墨烯等离激元的极端限制和可调谐性。石墨烯中普遍存在表面褶皱,但对于石墨烯中的褶皱如何影响表面等离激元共振及其吸收特性,人们了解甚少。在本文中,研究了一种基于褶皱石墨烯的新方法,通过对褶皱石墨烯谐振器进行机械重构来实现等离激元共振的宽带可调谐性。石墨烯褶皱的机械重构与石墨烯的双静电门控(即将费米能级从0.2 - 0.4 eV提高)相结合,作为一个调节旋钮,可在14 - 24 µm波长范围内实现等离激元共振的宽光谱可调谐性。谐振器中的褶皱区域表现出有效的捕获势,在褶皱表面极大地限制了表面等离激元场,在这些褶皱的顶点处提供局域表面等离激元共振。最后,为了在共振波长(17 µm和22 µm)实现近100%(>99%)的吸收,在褶皱石墨烯谐振器上加载了四个环形超材料,这导致近场强度增强约1.4×10 。这项研究通过为红外区域的柔性和栅极可调石墨烯传感器提供一个新平台,深入了解了褶皱石墨烯的可调谐性及其耦合机制。