Zhang Tianyue, Li Xuewei, Xu Jian, Zhang Xiaoming, Deng Zi-Lan, Li Xiangping
Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Institute of Photonics Technology, Jinan University, Guangzhou 510632, China.
College of Physics Science and Engineering Technology, Yichun University, Yichun 336000, China.
Nanomaterials (Basel). 2020 Jun 26;10(6):1242. doi: 10.3390/nano10061242.
Manipulating the light emission direction and boosting its directivity have essential importance in integrated nanophotonic devices. Here, we theoretically propose a single dielectric silicon nanoblock as an efficient, multifunctional and ultracompact all-dielectric nanoantenna to direct light into a preferential direction. Unidirectional scattering of a plane wave as well as switchable directive emission fed by a localized emitter are demonstrated within the nanoantenna. The high directionalities are revealed to originate from a variety of mechanisms that can coexist within a single nanoblock, which contribute to the far-field radiation patterns of the outcoming light, thanks to the wealth of multipolar electric and magnetic resonances. The efficient beam redirections are also observed, which are sensitive to the local configurations of the emitter antenna coupled system. The designed antenna, with extreme geometry simplicity, ultracompact and low-loss features, could be favorable for highly sensitive sensing as well as applications in optical nanocircuits.
在集成纳米光子器件中,控制光发射方向并提高其方向性至关重要。在此,我们从理论上提出一种单一介电硅纳米块,作为一种高效、多功能且超紧凑的全介电纳米天线,用于将光引导到优先方向。在该纳米天线内展示了平面波的单向散射以及由局域发射器馈入的可切换定向发射。结果表明,高方向性源于多种可在单个纳米块中共存的机制,由于丰富的多极电和磁共振,这些机制有助于出射光的远场辐射模式。还观察到了高效的光束重定向,其对发射器 - 天线耦合系统的局部配置敏感。所设计的天线具有极其简单的几何结构、超紧凑和低损耗的特点,可能有利于高灵敏度传感以及光学纳米电路中的应用。