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Semiconductor optical amplifier-based multi-wavelength ring laser utilizing photonic crystal fiber

机译:基于光子晶体光纤的基于半导体光放大器的多波长环形激光器

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摘要

A multi-wavelength laser source is demonstrated with a semiconductor optical amplifier (SOA) as a gain medium. A multi-wavelength comb with equal spacing is achieved due to Fabry-Perot modes of the SOA which oscillates in the ring cavity. A 100 m long photonics crystal fiber (PCF) is inserted in the ring cavity to provide a nonlinear gain by four-wave mixing (FWM) so that the output comb spectrum can be greatly broadened and flattened. The stability of the ring laser is also increased due to the efficient FWM phenomenon occurring in the PCF. The SOA-based laser can generate 35 lasing lines with equal spacing of 0.28 nm and extinction ratios of more than 30 dB at room temperature. The number of channels of the multi-wavelength laser can be controlled flexibly by changing the ratio of the coupler used in the ring cavity configuration as well as controlling the polarization state of the oscillating laser.
机译:以半导体光放大器(SOA)为增益介质,演示了多波长激光源。由于在环形腔中振荡的SOA的Fabry-Perot模式,可以实现具有相等间距的多波长梳齿。将100 m长的光子晶体光纤(PCF)插入环形腔中,以通过四波混频(FWM)提供非线性增益,从而可以大大展宽和展平输出梳状光谱。由于在PCF中发生了有效的FWM现象,环形激光器的稳定性也得到了提高。基于SOA的激光器在室温下可产生35条激光线,其等距间距为0.28 nm,消光比大于30 dB。通过改变环形腔结构中使用的耦合器的比例以及控制振荡激光器的偏振状态,可以灵活地控制多波长激光器的通道数。

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