Nozaki Kengo, Lacraz Amedee, Shinya Akihiko, Matsuo Shinji, Sato Tomonari, Takeda Koji, Kuramochi Eiichi, Notomi Masaya
Opt Express. 2015 Nov 16;23(23):30379-92. doi: 10.1364/OE.23.030379.
An all-optical packet switching using bistable photonic crystal nanocavity memories was demonstrated for the first time. Nanocavity-waveguide coupling systems were configured for 1 × 1, 1 × 2, and 1 × 3 switches for 10-Gb/s optical packet, and they were all operated with an optical bias power of only a few μW. The power is several magnitudes lower than that of previously reported all-optical packet switches incorporating all-optical memories. A theoretical investigation indicated the optimum design for reducing the power consumption even further, and for realizing a higher data-rate capability and higher extinction. A small footprint and integrability are also features of our switches, which make them attractive for constructing an all-optical packet switching subsystem with a view to realizing optical routing on a chip.
首次展示了一种使用双稳态光子晶体纳米腔存储器的全光分组交换。针对10 Gb/s光分组配置了用于1×1、1×2和1×3开关的纳米腔 - 波导耦合系统,并且它们均仅在几微瓦的光偏置功率下运行。该功率比先前报道的包含全光存储器的全光分组交换机的功率低几个数量级。理论研究表明了进一步降低功耗、实现更高数据速率能力和更高消光的优化设计。我们的交换机还具有占地面积小和可集成性的特点,这使得它们对于构建全光分组交换子系统以实现芯片上的光路由具有吸引力。