Optical Data Buffering Based on Stimulated-Brillouin-Scattering-Induced Acoustic Storage in an As2Se3 Fiber

Zhiyao Zhang, Xiaojun Zhou, Rui Liang, Zujun Qin, Yong Liu
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Abstract

Buffering of a 2.5 Gb/s bit stream with non-return-to- zero format is numerically demonstrated based on stimulated- Brillouin-scattering-induced acoustic storage in an As2Se3 fiber. The storage process and the retrieval process of the bit stream are separately controlled by a "Write" pulse and a "Read" pulse. Simulation results show that output signal-to-noise ratio of 21 dB, 18 dB, 16 dB, and readout efficiency of 71%, 47%, 31% can be achieved after 5-ns, 10-ns, 15-ns storage, respectively. The "Write" and "Read" pulses are chirped Gaussian ones with single pulse energy of ~0.25 �� J and spectrum-width of ~5 GHz, which are technically achievable. Buffering of a consecutive 10- bit-long 2.5 Gb/s non-return-to-zero bit stream has also been demonstrated in the As2Se3 fiber with length of 0.5 m. This buffering method can be used for all-optical buffering in optical- communication systems.
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As2Se3光纤中基于受激布里渊散射诱导声存储的光数据缓冲
基于As2Se3光纤中受激布里渊散射诱导声存储,对不归零格式的2.5 Gb/s比特流进行了数值模拟。位流的存储过程和检索过程分别由一个“写”脉冲和一个“读”脉冲控制。仿真结果表明,在5-ns、10-ns、15-ns存储后,输出信噪比分别为21 dB、18 dB、16 dB,读出效率分别为71%、47%、31%。“写”和“读”脉冲为啁啾高斯脉冲,单脉冲能量为~0.25 J,谱宽为~5 GHz,在技术上是可以实现的。在长度为0.5 m的As2Se3光纤中也演示了连续10位长的2.5 Gb/s不归零比特流的缓冲。这种缓冲方法可用于光通信系统的全光缓冲。
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