We report on four-wave mixing in coupled photonic crystal nano-cavities on a silicon-on-insulator platform. Three photonic wire cavities are side-coupled to obtain three modes equally separated in energy. The structure is designed to be self-filtering, and we show that the pump is rejected by almost two orders of magnitudes. We study both the stimulated and the spontaneous four-wave mixing processes: owing to the small modal volume, we find that signal and idler photons are generated with a hundred-fold increase in efficiency as compared to silicon micro-ring resonators.
翻译:我们在一个硅构造的平台上报告了四波混合的相光晶体纳米孔。 三个光度电线孔是侧相相交的, 以获得能源中平均分离的三种模式。 结构的设计是自我过滤的, 我们显示泵被几乎两个数量级的拒绝。 我们研究刺激和自发四波混合过程: 由于模型体积小, 我们发现信号和闲置光子的生成效率比硅微环共振反应器提高了一百倍。