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Stable Optical Frequency-Locked Multicarriers Generation by Double Recirculating Frequency Shifter Loops for Tb/s Communication

机译:用于Tb / s通信的双循环移频器环路产生稳定的光学锁频多载波

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摘要

We propose and experimentally demonstrate a novel scheme to generate optical frequency-locked multicarriers by using double recirculation frequency shifter loops based on different frequency shifting direction single-sideband modulation in I/Q modulators driven by RF clock signals. By changing the phase difference of I and Q RF drive signal, each loop generates long wavelength and short wavelength subcarriers, respectively. The tone-to-noise ratio (TNR) performance with amplified spontaneous emission noise and the effect of polarization state are theoretically analyzed and experimentally investigated for the first time. Experimental results are in good agreement with the theoretical analysis. Using this scheme, we successfully generate 104 frequency-locked subcarriers with TNR larger than 17 dB and carrier spacing at 12.5 GHz covering 10.21 nm from 1545.01 to 1555.22 nm which shows that this scheme has great potential in future Tb/s per channel communications. The feasibility of this scheme is demonstrated by the experimental results.
机译:我们提出并通过实验证明了一种新颖的方案,该方案通过使用基于RF时钟信号驱动的I / Q调制器中不同移频方向单边带调制的双循环移频器环路来生成光锁频多载波。通过改变I和Q RF驱动信号的相位差,每个环路分别生成长波长和短波长子载波。首次从理论上分析和实验研究了具有放大的自发发射噪声的音噪比(TNR)性能和偏振态的影响。实验结果与理论分析吻合良好。使用该方案,我们成功地生成了104个TNR大于17 dB的锁频子载波,并且在12.5 GHz处的载波间隔覆盖了从1545.01到1555.22 nm的10.21 nm,这表明该方案在未来每信道通信的Tb / s中具有巨大的潜力。实验结果证明了该方案的可行性。

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