Qing Ye Ming, Ma Hui Feng, Cui Tie Jun
Opt Express. 2018 Dec 10;26(25):32442-32450. doi: 10.1364/OE.26.032442.
A metamaterial perfect absorber composed of a black phosphorus (BP) monolayer, a photonic crystal, and a metallic mirror is designed and investigated to enhance light absorption at terahertz frequencies. Numerical results reveal that the absorption is enhanced greatly with narrow spectra due to critical coupling, which is enabled by guided resonances. Intriguingly, the structure manifests the unusual polarization-dependent feature attributable to the anisotropy of black phosphorus. The quality factor of the absorber can be as high as 95.1 for one polarization while 63.5 for another polarization, which is consistent with the coupled wave theory. The absorption is tunable by varying key parameters, such as period, radius, slab thickness, incident angle, and polarization angle. Furthermore, the state of the system (i.e., critical coupling, over coupling, and under coupling) can be tuned by changing the electron doping of BP, thus achieving various applications. This work offers a paradigm to enhance the light-matter interaction in monolayer BP without plasmonic response, and this easy-to-fabricate structure will provide potential applications in BP-based devices.
设计并研究了一种由黑磷(BP)单层、光子晶体和金属镜组成的超材料完美吸收体,以增强太赫兹频率下的光吸收。数值结果表明,由于临界耦合,吸收在窄光谱范围内大大增强,这是由导模共振实现的。有趣的是,该结构表现出归因于黑磷各向异性的不寻常的偏振依赖特性。对于一种偏振,吸收体的品质因数可高达95.1,而对于另一种偏振则为63.5,这与耦合波理论一致。通过改变关键参数,如周期、半径、平板厚度、入射角和偏振角,吸收是可调的。此外,通过改变BP的电子掺杂可以调节系统状态(即临界耦合、过耦合和欠耦合),从而实现各种应用。这项工作提供了一种在无等离子体响应的单层BP中增强光与物质相互作用的范例,这种易于制造的结构将在基于BP的器件中提供潜在应用。