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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >20 ps Transition Time All-Optical SOA-Based Flip-Flop Used for Photonic 10 Gb/s Switching Operation Without Any Bit Loss
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20 ps Transition Time All-Optical SOA-Based Flip-Flop Used for Photonic 10 Gb/s Switching Operation Without Any Bit Loss

机译:20 ps过渡时间基于SOA的全光触发器,用于光子10 Gb / s开关操作,无任何位损失

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摘要

A novel scheme for integrable ultrafast all-optical flip-flop is demonstrated. Transition times as low as 20 ps with a contrast ratio higher than 17.5 dB have been experimentally measured. All-optical switching operation in a 2 $times$2 spatial and wavelength preserving switch is reported with a power penalty of about 1 dB. The proposed solution exploits the fast falling edge provided by a semiconductor optical amplifier (SOA) based optical flip-flop. Numerical investigations already demonstrated high extinction ratios (>40 dB) and low switching energies (15.6 fJ) for integrated optical flip-flop. On the other hand, slow rising times, due to the cavity length, intrinsically limit such configurations. By using SOA-based logic gates, two flip-flop outputs are combined in a new bistable signal. Both the new rising and falling edges are related to the primary flip-flop falling edge. This way it is possible to eliminate the intrinsic slow rising time that limits the flip-flop configuration based on the coupled ring lasers, without excessively increasing the complexity of the structure and maintaining a reasonably high contrast ratio. Furthermore, the noise on the high level has been improved due to the regenerative properties of the logic gates based on cross-gain modulation and cross-phase modulation in a single nonlinear SOA. Finally, flip-flop output has been used to drive a 2$times$ 2 all-optical spatial and wavelength preserving switch based on SOAs. For cross/bar switch configurations, 10 Gb/s error-free operation has been obtained without bit loss.
机译:展示了一种可集成的超快全光触发器的新颖方案。实验测量的过渡时间低至20 ps,对比度高于17.5 dB。据报道,在一个2 x 2的空间和波长保留开关中,全光开关操作的功率损失约为1 dB。提出的解决方案利用了由基于半导体光放大器(SOA)的光触发器提供的快速下降沿。数值研究已经表明,集成光触发器的消光比高(> 40 dB),开关能量低(15.6 fJ)。另一方面,由于腔体长度的原因,缓慢的上升时间本质上限制了这种配置。通过使用基于SOA的逻辑门,两个触发器输出被组合到一个新的双稳态信号中。新的上升沿和下降沿都与主触发器的下降沿相关。这样,可以消除固有的缓慢上升时间,该上升时间限制了基于耦合环形激光器的触发器配置,而不会过度增加结构的复杂性并保持合理的高对比度。此外,由于在单个非线性SOA中基于交叉增益调制和交叉相位调制的逻辑门的再生特性,高层噪声得到了改善。最后,触发器输出已被用于驱动基于SOA的2×2的全光空间和波长保留开关。对于交叉/条形交换机配置,已获得10 Gb / s的无错误操作,而没有比特损失。

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