Markov Petr, Appavoo Kannatassen, Haglund Richard F, Weiss Sharon M
Opt Express. 2015 Mar 9;23(5):6878-87. doi: 10.1364/OE.23.006878.
We present a computational design for an integrated electro-optic modulator based on near-field plasmonic coupling between gold nanodisks and a thin film of vanadium dioxide on a silicon substrate. Active modulation is achieved by applying a time-varying electric field to initiate large changes in the refractive index of vanadium dioxide. Significant decrease in device footprint (200 nm x 560 nm) and increase in extinction ratio per unit length (9 dB/µm) compared to state-of-the-art photonic and plasmonic modulators are predicted.
我们展示了一种基于金纳米盘与硅衬底上二氧化钒薄膜之间的近场等离子体耦合的集成电光调制器的计算设计。通过施加时变电场以引发二氧化钒折射率的大幅变化来实现有源调制。预计与现有最先进的光子和等离子体调制器相比,该器件的占地面积显著减小(200 nm×560 nm),且单位长度的消光比增加(9 dB/µm)。