Abou-Hamdan Loubnan, Li Claire, Haidar Riad, Krachmalnicoff Valentina, Bouchon Patrick, De Wilde Yannick
Opt Lett. 2021 Mar 1;46(5):981-984. doi: 10.1364/OL.413382.
The study of hybrid modes in a single dimer of neighboring antennas is an essential step to optimize the far-field electromagnetic (EM) response of large-scale metasurfaces or any complex antenna structure made up of subwavelength building blocks. Here we present far-field infrared spatial modulation spectroscopy (IR-SMS) measurements of a single thermally excited asymmetric dimer of square metal-insulator-metal (MIM) antennas separated by a nanometric gap. Through thermal fluctuations, all the EM modes of the antennas are excited, and hybrid bonding and anti-bonding modes can be observed simultaneously. We study the latter within a plasmon hybridization model, and analyze their effect on the far-field response.
研究相邻天线的单个二聚体中的混合模式是优化大规模超表面或任何由亚波长构建块组成的复杂天线结构的远场电磁(EM)响应的关键步骤。在此,我们展示了对由纳米间隙隔开的方形金属-绝缘体-金属(MIM)天线的单个热激发非对称二聚体进行的远场红外空间调制光谱(IR-SMS)测量。通过热涨落,天线的所有电磁模式都被激发,并且可以同时观察到混合键合和反键合模式。我们在等离子体杂交模型中研究后者,并分析它们对远场响应的影响。