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首页> 外文期刊>IEEE Photonics Technology Letters >A Single Slow-Light Element for Independent Delay Control and Synchronization on Multiple Gb/s Data Channels
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A Single Slow-Light Element for Independent Delay Control and Synchronization on Multiple Gb/s Data Channels

机译:用于多个Gb / s数据通道上独立延迟控制和同步的单个慢光元件

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摘要

Independent delay control and bit-level synchronization of multiple data channels are demonstrated through a single stimulated Brillouin scattering (SBS)-based slow-light element. Multiple, independently tunable SBS gain resonances are generated in a single piece of highly nonlinear fiber from multiple SBS pumps. Each pump is broadened by noise modulating the laser current so that the bandwidth is compatible with high-speed gigabit-per-second data signals. Bit-level synchronization on three 2.5-Gb/s nonreturn-to-zero on–off keying channels shows independent and continuous delay control of up to 112 ps. Bit-error-rate measurement on the synchronized channels shows $<$3.5-dB power penalty. Effect of one channel on the other channel''s delay is also investigated and the reason is attributed to the nonlinear crosstalk.
机译:通过基于单个受激布里渊散射(SBS)的慢光元素,演示了多个数据通道的独立延迟控制和位级同步。在多个高SBS泵的单根高度非线性光纤中会产生多个可独立调节的SBS增益谐振。每个泵都通过噪声调制激光电流而加宽,从而使带宽与每秒高速千兆位数据信号兼容。三个2.5 Gb / s非归零开关键控通道上的位级同步显示独立且连续的延迟控制,最高可达112 ps。在同步通道上的误码率测量显示出$ <$ 3.5-dB的功率损失。还研究了一个通道对另一通道延迟的影响,其原因归因于非线性串扰。

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