Sakaguchi Jun, Katayama Takeo, Kawaguchi Hitoshi
Graduate School of Materials Science, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara 630-0192, Japan.
Opt Express. 2010 Jun 7;18(12):12362-70. doi: 10.1364/OE.18.012362.
The fastest known operation of all-optical flip-flop memory was experimentally demonstrated using a 980-nm polarization bistable vertical-cavity surface-emitting laser (VCSEL). Operating conditions of the input signal power and the frequency detuning to achieve the fast optical memory operation were characterized experimentally. At the optimum condition, 1-bit data signals were arbitrarily sampled and memorized from a 2(6)-1 pseudorandom bit sequence return-to-zero signal at 20 Gb/s by using AND gate and memory functionalities obtained from the polarization bistability. In addition, 1-bit memory operation was achieved for a 6-bit non-return-to-zero signal at 40 Gb/s. Both memory operations required 250-microW data signal power and had optical gain. The high potential of all-optical flip-flop memories based on polarization bistable VCSELs for use in ultrafast all-optical future networks was demonstrated.
利用一个980纳米的偏振双稳垂直腔面发射激光器(VCSEL),通过实验证明了全光触发器存储器已知的最快操作。通过实验表征了实现快速光存储操作的输入信号功率和频率失谐的操作条件。在最佳条件下,利用偏振双稳性获得的与门和存储功能,从20 Gb/s的2(6)-1伪随机比特序列归零信号中任意采样并存储1比特数据信号。此外,对于40 Gb/s的6比特不归零信号实现了1比特存储操作。两种存储操作都需要250微瓦的数据信号功率并且具有光增益。证明了基于偏振双稳VCSEL的全光触发器存储器在超快全光未来网络中的巨大潜力。