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Tunable and non-reciprocal dual-wavelength SOA-fiber ring laser

机译:可调谐且不可逆的双波长SOA光纤环形激光器

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Dual-wavelength fiber lasers provide a low cost and simple method for the optical generation of microwave and THz radiation over the electrical techniques. The main reported technique for this purpose is based on the use of FBGs with two different and close wavelengths allowing these two wavelengths only to oscillate within a laser cavity comprising EDFA or SOA gain medium, where the latter provides much less homogeneous line-broadening and improved stability. Non-conventional FBGs and filtering mechanisms were reported all based on unidirectional configuration, where the two wavelengths propagate in the same direction in the ring laser. In this work, we report a tunable dual-wavelength ring laser including non-reciprocal circulators connected back to back providing uncommon path and allowing for having each wavelength rotating in a different direction in the ring. This technique provides the flexibility of controlling each of the wavelengths separately in terms of tunability, polarization and losses. Two tunable Fabry-Perot filters are inserted in the uncommon path and the wavelength of the CW and the CCW waves are controlled independently. Polarization controllers are used in the ring to achieve better stability and achieve single longitudinal mode of operation. For a given settings of the filters, the wavelength of the CW wave is 1485.2 nm while the CCW wave wavelength is 1488.5 nm. The generation of tunable dual wavelength laser is demonstrated by tuning of either of the Fabry-Perot filters. For instance, the CCW wave was tuned from 1532.2 nm to 1534.1 nm while holding the CW at 1535.2 nm. The results demonstrate the generation of tunable dual-wavelength laser output in the proposed non-reciprocal ring, which allows for tunable THz generation.
机译:双波长光纤激光器为通过电子技术光学产生微波和太赫兹辐射提供了一种低成本且简单的方法。为此目的,主要报道的技术是基于使用具有两个不同且接近的波长的FBG,从而使这两个波长仅在包含EDFA或SOA增益介质的激光腔内振荡,后者可大大减少均匀的线宽并改善其性能。稳定性。据报道,所有非常规FBG和滤波机制均基于单向配置,其中两个波长在环形激光器中沿相同方向传播。在这项工作中,我们报告了一种可调谐的双波长环形激光器,该环形激光器包括背对背连接的不可逆环行器,从而提供不常见的路径,并允许每个波长在环中以不同方向旋转。该技术提供了在可调性,偏振和损耗方面分别控制每个波长的灵活性。在不寻常的路径中插入了两个可调Fabry-Perot滤波器,并且分别控制CW和CCW波的波长。环中使用了偏振控制器,以实现更好的稳定性并实现单纵向操作模式。对于滤镜的给定设置,CW波的波长为1485.2 nm,而CCW波的波长为1488.5 nm。可调谐双波长激光器的产生是通过调谐任何一个Fabry-Perot滤光片来证明的。例如,CCW波从1532.2 nm调谐到1534.1 nm,而CW保持在1535.2 nm。结果证明了在所提出的不可逆环中可调谐双波长激光输出的产生,这使得可调谐THz产生。

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