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Mode coupling and competition in square-racetrack hybrid-cavity semiconductor lasers

机译:Square-raceTrack混合腔半导体激光器的模式耦合和竞争

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摘要

We propose and demonstrate square-racetrack hybrid-cavity semiconductor lasers to achieve lasing mode control. Strong mode coupling between the modes of the square and racetrack cavities is predicted by finite element method numerical simulation and confirmed by experimental lasing spectra. Mode coupling leads to anti-crossing of the mode wavelengths, crossing of the mode quality factors, and hybrid modes with the field distributing in both square and racetrack cavities, and will affect the competition of lasing modes together with gain distribution induced by separately injected current of the two cavities. Single-mode lasing with a side-mode suppression ratio up to 38 dB and dual-mode lasing with an intensity ratio down to 1 dB are realized by tuning the injection current. Furthermore, increasing racetrack cavity size affects the mode competition process and results in racetrack-mode-dominated lasing for square-racetrack hybrid-cavity semiconductor lasers. (c) 2018 Optical Society of America.
机译:我们提出并展示了方形赛道混合腔半导体激光器,以实现激光模式控制。通过有限元方法数值模拟预测正方形和跑角腔模式之间的强模式耦合,并通过实验激光谱证实。模式耦合导致模式波长的反交叉,模式质量因子的交叉和混合模式与平方和跑道腔中的场,并将影响激光模式的竞争与单独注入电流引起的增益分布两个蛀洞。通过调谐喷射电流来实现具有高达38 dB的侧面抑制比的单模激活,其具有下降至1 dB的强度比为1dB的双模激活。此外,增加赛道腔尺寸影响模式竞争过程,并导致正方形赛道混合腔半导体激光器的跑道模式主导的激光。 (c)2018年光学学会。

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