Guo Jing
Appl Opt. 2014 Mar 10;53(8):1604-9. doi: 10.1364/AO.53.001604.
We have demonstrated the analogue of electromagnetically induced transparency (EIT) in the metal-insulator-metal plasmonic waveguide, which consists of a bus waveguide side-coupled with a series of slot cavities. By finite-difference time-domain simulations, it is found that the resonance wavelength of the slot cavity can be controlled by adjusting the length of the cavity. Moreover, the EIT-like response is strongly dependent on the coupling separation between the corresponding adjacent cavities. Multiple-peak plasmon-induced transparency can be realized by cascading multiple cavities with different lengths and suitable cavity-cavity separations. This ultracompact plasmonic waveguide system may find important applications for multichannel plasmonic filter, nanoscale optical switching, and slow-light devices in highly integrated optical circuits and networks.
我们已经在金属-绝缘体-金属等离子体波导中展示了电磁诱导透明(EIT)的类似物,该波导由与一系列狭缝腔侧面耦合的总线波导组成。通过时域有限差分模拟发现,狭缝腔的共振波长可以通过调整腔的长度来控制。此外,类似EIT的响应强烈依赖于相应相邻腔之间的耦合间距。通过级联具有不同长度和合适腔间距的多个腔,可以实现多峰等离子体诱导透明。这种超紧凑的等离子体波导系统可能在高度集成的光学电路和网络中的多通道等离子体滤波器、纳米级光开关和慢光器件方面找到重要应用。