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All-Optical NRZ-to-RZ Data Format Conversion with Optically Injected Laser Diode or Semiconductor Optical Amplifier

机译:使用光学注入激光二极管或半导体光放大器的全光NRZ到RZ数据格式转换

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摘要

By injecting the optical NRZ data into a Fabry-Perot laser diode (FPLD) synchronously modulated at below threshold condition or a semiconductor optical amplifier (SOA) gain-depleted with a backward injected clock stream, the all-optical non-return to zero (NRZ) to return-to-zero (RZ) format conversion of a STM-64 date-stream for synchronous digital hierarchy (SDH) or an OC-192 data stream for synchronous optical network (SONET) in high-speed fiber-optic communication link can be performed. Without the assistance of any complicated RF electronic circuitry, the output RZ data-stream at bit rate of up to 10 Gbit/s is successfully transformed in the optically NRZ injection-locked FPLD, in which the incoming NRZ data induces gain-switching of the FPLD without DC driving current or at below threshold condition. A power penalty of 1.2 dB is measured after NRZ-to-RZ transformation in the FPLD. Alternatively, the all-optical 10Gbits/s NRZ-to-RZ format conversion can also be demonstrated in a semiconductor optical amplifier under a backward dark-optical-comb injection with its duty-cycle 70%, which is obtained by reshaping from the received data clock at 10 GHz. The incoming optical NRZ data-stream is transformed into a pulsed RZ data-stream with its duty-cycle, rms timing jitter, and conversion gain of 15%, 4ps, and 3dB, respectively. In contrast to the FPLD, the SOA based NRZ-to-RZ converter exhibits an enhanced extinction ratio from 7 to 13 dB, and BER of 10~(-13) at -18.5 dBm. In particular, the power penalty of the received RZ data-stream has greatly improved by 5 dB as compared to that obtained from FPLD.
机译:通过将光学NRZ数据注入到在低于阈值条件下同步调制的Fabry-Perot激光二极管(FPLD)中,或将半导体光放大器(SOA)的增益用反向注入的时钟流来消耗掉,全光不归零( NRZ)转换为高速光纤通信中用于同步数字体系(SDH)的STM-64日期流或用于同步光网络(SONET)的OC-192数据流的归零(RZ)格式转换链接可以执行。无需任何复杂的RF电子电路的帮助,以高达10 Gbit / s的比特率输出的RZ数据流就可以在光学NRZ注入锁定FPLD中成功转换,其中,传入的NRZ数据会引起光信号的增益切换。 FPLD没有直流驱动电流或低于阈值条件。在FPLD中从NRZ转换为RZ之后,测得的功率损失为1.2 dB。另外,全光10Gbit / s NRZ到RZ格式的转换也可以在半导体光放大器中以向后暗光梳状注入的方式进行演示,其占空比为70%,这是通过从接收信号中重塑获得的10 GHz的数据时钟。传入的光学NRZ数据流被转换为脉冲RZ数据流,其占空比,均方根定时抖动和转换增益分别为15%,4ps和3dB。与FPLD相比,基于SOA的NRZ-to-RZ转换器在-78.5 dB处具有更高的消光比,在-18.5 dBm时的BER为10〜(-13)。特别是,与从FPLD获得的功率损耗相比,接收到的RZ数据流的功率损耗已大大提高了5 dB。

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