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首页> 外文期刊>Photonics Technology Letters, IEEE >Wavelength Tunability of All-Optical Clock-Recovery Based on Quantum-Dash Mode-Locked Laser Diode Under Injection of a 40-Gb/s NRZ Data Stream
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Wavelength Tunability of All-Optical Clock-Recovery Based on Quantum-Dash Mode-Locked Laser Diode Under Injection of a 40-Gb/s NRZ Data Stream

机译:在注入40 Gb / s NRZ数据流的情况下基于Quantum-Dash锁模激光二极管的全光时钟恢复的波长可调性

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摘要

Wavelength tunability of an all-optical clock recovery operation based on a quantum-dash mode-locked Fabry–Pérot laser diode is experimentally investigated. Synchronization of the device to the injection of 40-Gb/s nonreturn-to-zero (NRZ) incoming data is assessed by analyzing both the carrier-to-noise ratio and the linewidth of the 40-GHz beat-tones measured at the mode-locked laser output. Under optical injection, beat-tone linewidths below 10 Hz are measured. Recovered clock pulses featuring a width of 1.6 ps are obtained irrespective of the wavelength detuning between the laser spectra and the optical carrier of the incoming data stream.
机译:实验研究了基于量子点锁模法布里-珀罗激光二极管的全光时钟恢复操作的波长可调性。通过分析在该模式下测得的40 GHz拍频的载波噪声比和线宽来评估设备与注入40 Gb / s非归零(NRZ)传入数据的同步锁定的激光输出。在光学注入下,测量低于10 Hz的拍调线宽。无论波长在激光光谱与输入数据流的光学载波之间发生失谐如何,都能获得宽度为1.6 ps的恢复时钟脉冲。

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