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Thermal effects of the gradient doping gain fiber in all-fiber MOPA

机译:全纤维MOPA中梯度掺杂增益纤维的热效应

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Thermal effect in the gain fiber is one of the main factors which restrict the power improvement of high power fiber amplifiers. Previous studies have shown that the thermal effect is closely related to the doping concentration in the gain fiber. In order to reduce the temperature at the fusion point and the maximum temperature of the gain fiber, we propose to use doping concentration varying along the gain fiber as a method to disperse the thermal effect of the gain fiber. A two stage single frequency all-fiber-integrated MOPA is demonstrated, the second stage of which has a hybrid gain fiber composed of high-doped and low-doped Yb fibers. The temperature of the gain fiber is measured by a thermal imaging camera. It is shown that compared with the constant doping fiber, temperature in the gradient doping fiber is greatly reduced when the output powers are approximately the same. Results indicate that the gradient doping of the gain fiber is an effective way to alleviate the thermal effect in high power fiber lasers.
机译:增益光纤中的热效应是限制高功率光纤放大器功率改进的主要因素之一。以前的研究表明,热效应与增益纤维中的掺杂浓度密切相关。为了降低熔点的熔点和最高温度的增益光纤,我们建议使用沿增益纤维变化的掺杂浓度作为分散增益纤维的热效应的方法。证明了两个阶段单频全纤维集成的MOPA,其第二级具有由高掺杂和低掺杂的YB纤维组成的混合增益纤维。通过热成像相机测量增益光纤的温度。结果表明,与恒定掺杂纤维相比,当输出功率大致相同时,梯度掺杂纤维中的温度大大降低。结果表明,增益纤维的梯度掺杂是缓解高功率纤维激光器中的热效应的有效方法。

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