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Switchable dual-wavelength single-longitudinal-mode erbium-doped fiber laser using an inverse-Gaussian apodized fiber Bragg grating filter and a low-gain semiconductor optical amplifier

机译:使用高斯逆切趾光纤布拉格光栅滤波器和低增益半导体光放大器的可切换双波长单纵模掺fiber光纤激光器

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摘要

We present a stable and switchable dual-wavelength erbium-doped fiber laser. In the ring cavity, an inverse-Gaussian apodized fiber Bragg grating serves as an ultranarrow dual-wavelength passband filter, a semiconductor optical amplifier biased in the low-gain regime reduces the gain competition of the two wavelengths, and a feedback fiber loop acts as a mode filter to guarantee a stable single-longitudinal-mode operation. Two lasing lines with a wavelength separation of approximately 0.1 nm are obtained experimentally. A microwave signal at 12.51 GHz is demonstrated by beating the dual wavelengths at a photodetector.
机译:我们提出了一种稳定且可切换的双波长掺fiber光纤激光器。在环形腔中,高斯逆切趾光纤布拉格光栅用作超窄双波长通带滤波器,偏置在低增益状态的半导体光放大器减少了两个波长的增益竞争,而反馈光纤环路则充当模式滤波器,以确保稳定的单纵模运行。实验获得了两条波长间隔约为0.1 nm的激光线。通过在光电探测器上击败双波长来演示12.51 GHz的微波信号。

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