Behroozinia Sahar, Rajabalipanah Hamid, Abdolali Ali
Opt Lett. 2020 Feb 15;45(4):795-798. doi: 10.1364/OL.383001.
Acquiring full control over a large number of diffraction orders can be strongly attractive in the case of realizing multifunctional devices such as multichannel reflectors. Recently, the concept of metagrating has been introduced, which enables obtaining the desired diffraction pattern through a sparse periodic array of engineered scatterers. In this Letter, for the first time, to the best of our knowledge, a tunable all-graphene multichannel meta-reflector is proposed for operating at terahertz (THz) frequencies. In the supercell level, the designed metagrating is composed of three graphene ribbons of different controllable chemical potentials which can be regarded as a five-channel THz meta-reflector. By choosing proper distribution of DC voltages feeding the ribbons, our design can realize different intriguing functionalities such as anomalous reflection, retroreflection, and three-channel power splitting within a single shared aperture and with high efficiency. This Letter paves the way toward designing highly efficient and tunable THz multichannel meta-reflectors with many potential applications in photonics and optoelectronics.
在实现诸如多通道反射器等多功能器件的情况下,能够完全控制大量衍射级次可能会极具吸引力。最近,超颖光栅的概念被引入,它能够通过稀疏的周期性工程散射体阵列获得所需的衍射图样。在本信函中,据我们所知,首次提出了一种用于太赫兹(THz)频率工作的可调谐全石墨烯多通道超颖反射器。在超胞层面,所设计的超颖光栅由三条具有不同可控化学势的石墨烯带组成,可将其视为一个五通道太赫兹超颖反射器。通过选择馈入这些带的直流电压的适当分布,我们的设计能够在单个共享孔径内高效地实现不同的有趣功能,如反常反射、后向反射和三通道功率分配。本信函为设计高效且可调谐的太赫兹多通道超颖反射器铺平了道路,这类反射器在光子学和光电子学中有许多潜在应用。