Zhang Tianyue, Xu Jian, Deng Zi-Lan, Hu Dejiao, Qin Fei, Li Xiangping
Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Institute of Photonics Technology, Jinan University, Guangzhou 510632, China.
Nanomaterials (Basel). 2019 Apr 18;9(4):629. doi: 10.3390/nano9040629.
Light manipulation at the nanoscale is the vanguard of plasmonics. Controlling light radiation into a desired direction in parallel with high optical signal enhancement is still a challenge for designing ultracompact nanoantennas far below subwavelength dimensions. Here, we theoretically demonstrate the unidirectional emissions from a local nanoemitter coupled to a hybrid nanoantenna consisting of a plasmonic dipole antenna and an individual silicon nanorod. The emitter near-field was coupled to the dipolar antenna plasmon resonance to achieve a strong radiative decay rate modification, and the emitting plasmon pumped the multipoles within the silicon nanorod for efficient emission redirection. The hybrid antenna sustained a high forward directivity (i.e., a front-to-back ratio of 30 dB) with broadband operating wavelengths in the visible range (i.e., a spectral bandwidth of 240 nm). This facilitated a large library of plasmonic nanostructures to be incorporated, from single element dipole antennas to gap antennas. The proposed hybrid optical nanorouter with ultracompact structural dimensions of 0.08 λ was capable of spectrally sorting the emission from the local point source into distinct far-field directions, as well as possessing large emission gains introduced by the nanogap. The distinct features of antenna designs hold potential in the areas of novel nanoscale light sources, biosensing, and optical routing.
纳米尺度下的光操控是等离激元学的前沿领域。对于设计远低于亚波长尺寸的超紧凑型纳米天线而言,在实现高光信号增强的同时将光辐射控制到所需方向仍是一项挑战。在此,我们从理论上证明了与由等离激元偶极天线和单个硅纳米棒组成的混合纳米天线耦合的局域纳米发射器的单向发射。发射器近场与偶极天线等离激元共振耦合,以实现强辐射衰减率的改变,并且发射的等离激元激发硅纳米棒内的多极子以实现有效的发射重定向。该混合天线在可见光范围内具有宽带工作波长(即240 nm的光谱带宽),并保持了较高的前向方向性(即前后比为30 dB)。这有利于纳入大量的等离激元纳米结构库,从单元素偶极天线到间隙天线。所提出的具有0.08 λ超紧凑型结构尺寸的混合光学纳米路由器能够将来自局域点源的发射光谱分离到不同的远场方向,并且具有由纳米间隙引入的大发射增益。天线设计的独特特性在新型纳米级光源、生物传感和光路由等领域具有潜力。