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Homodyne Coherent Optical Receiver Using an Optical Injection Phase-Lock Loop

机译:使用光注入锁相环的Homodyne相干光接收机

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We describe the operating principle, practical implementation, and experimental evaluation of a synchronous homodyne coherent optical receiver based on an optical phase-locking scheme that combines optical injection locking of the semiconductor laser local oscillator (LO) with low-speed electronic feedback to give both a large locking bandwidth and a wide tracking range. We demonstrate phase-error variance as low as 0.002 rad2 in 10-GHz bandwidth for locking to a continuous-wave (CW) signal for a combined signal and LO linewidth of 1.5 MHz (full-width at half-maximum), and robust phase locking to a 10-Gb/s binary amplitude-shift-keyed (ASK) signal, enabling synchronous back-to-back demodulation of the signal with low bit error ratio (BER <; 10- 10) and improved performance compared to direct detection at low optical SNR (OSNR). By locking to a low-power CW pilot carrier in the polarization orthogonal to the data signal, demodulation of binary phase-shift-keyed (BPSK) data has been achieved, with the required OSNR at BER = 10-3 reduced by 3 dB compared to demodulation of ASK data under the same conditions. The OSNR penalty after transmission of the ASK and BPSK signals over 40 km of standard single-mode fiber was 1-2 dB at BER = 10-3, indicating that the chromatic dispersion sensitivity of the coherent receiver is similar to that for direct detection, and verifying that the scheme for locking to the orthogonal pilot is applicable to transmission systems, provided that optical polarization tracking is employed. In addition, we demonstrate frequency-selective operation of the coherent receiver, demultiplexing and demodulating one of a pair of equal power, 10 Gb/s, ASK channels separated by 17.5 GHz, with OSNR penalty at BER = 10- 3 of 1.5 dB compared to single-channel operation.
机译:我们描述了基于光学锁相方案的同步零差相干光接收机的工作原理,实际实现和实验评估,该方案将半导体激光本地振荡器(LO)的光注入锁与低速电子反馈结合在一起,较大的锁定带宽和较宽的跟踪范围。我们展示了在10 GHz带宽中可将相位误差方差低至0.002 rad 2 ,用于锁定组合信号和LO线宽为1.5 MHz的连续波(CW)信号(在半最大值)和对10 Gb / s二进制幅度移位键控(ASK)信号的稳健锁相,从而实现了低误码率(BER <; 10 -10 ),与低光学SNR(OSNR)的直接检测相比,性能得到了改善。通过在正交于数据信号的极化方向上锁定低功率CW导频载波,可以实现对二进制相移键控(BPSK)数据的解调,并在BER = 10 -3 的情况下,在40 km的标准单模光纤上传输ASK和BPSK信号后,OSNR损失为1-2 dB,这表明相干接收机的色散灵敏度为类似于直接检测的方法,并且在采用光偏振跟踪的情况下,验证了用于锁定正交导频的方案是否适用于传输系统。此外,我们演示了相干接收器的频率选择操作,对一对功率相等的10 Gb / s,ASK信道(由17.5 GHz隔开)中的一个信号进行多路分解和解调,BER = 10 -3 <与单通道操作相比,/ sup>为1.5 dB。

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