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Dual-wavelength single-frequency laser emission in asymmetric coupled microdisks

机译:非对称耦合微盘中的双波长单频激光发射

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摘要

The gain and loss in a microcavity laser play an important role for the modulation of laser spectrum. We show that dual-wavelength single mode lasing can be achieved in an asymmetric coupled system consisted of two size-mismatched microdisks. The amount of eigenmodes in this coupled-microdisk system is reduced relying on the Vernier effect. Then a single mode is selected to lase by controlling the gain branching in the supermodes. The supermodes are formed by the coupling between different transverse whispering-gallery modes (WGMs). When the gain/loss status between the two mirodisks is changed through selectively pumping process, the modulated gain branching for various supermodes leads to the switchable single-frequency laser emission. The results obtained in this work will provide the further understand for the spectral modulation mechanism in the coupled microcavity laser system.
机译:微腔激光器中的增益和损耗对于调制激光光谱起着重要作用。我们表明,在由两个大小不匹配的微型磁盘组成的不对称耦合系统中,可以实现双波长单模激光。依靠游标效应,减少了这种耦合微盘系统中的本征模数量。然后,通过控制超模式中的增益分支来选择一种模式来发射激光。超模式是由不同的横向耳语画廊模式(WGM)之间的耦合形成的。当通过选择性泵浦过程更改两个微盘之间的增益/损耗状态时,针对各种超模的调制增益分支会导致可切换的单频激光发射。这项工作中获得的结果将为耦合微腔激光系统中的光谱调制机制提供进一步的了解。

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