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High External Feedback Resistance of Laterally Loss-Coupled Distributed Feedback Quantum Dot Semiconductor Lasers

机译:横向损耗耦合分布反馈量子点半导体激光器的高外部反馈电阻

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External optical feedback effects on quantum dot (QD) laterally loss-coupled (LLC) distributed feedback (DFB) lasers are reported for the first time in this letter. The critical external feedback ratio that causes coherence collapse of the QD DFB is measured to be -14 dB. No spectral broadening at this feedback level is observed within the 0.06-nm resolution of the optical spectrum analyzer (OSA). Self-homodyne measurements also confirm that the rebroadened linewidth of the QD DFB under -14-dB feedback is still much smaller than the feedback-free linewidth. Under 2.5-Gb/s modulation, eye-diagram measurements show that the signal-to-noise ratio starts to degrade at a feedback ratio of -30 dB in the QD LLC-DFB, about 20 dB higher than a typical quantum-well DFB at the same output power and extinction ratio.
机译:这封信首次报道了对量子点(QD)横向损耗耦合(LLC)分布式反馈(DFB)激光器的外部光反馈效应。导致QD DFB相干崩溃的关键外部反馈比为-14 dB。在光谱分析仪(OSA)的0.06 nm分辨率内,在此反馈级别上未观察到光谱展宽。自同调测量还证实,在-14 dB反馈下QD DFB的重新加宽线宽仍然比无反馈线宽小得多。在2.5 Gb / s调制下,眼图测量结果表明,QD LLC-DFB中的信噪比以-30 dB的反馈比开始下降,比典型的量子阱DFB高约20 dB。在相同的输出功率和消光比下。

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