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Analysis of photo-darkening losses in high power Yb doped fiber lasers and amplifiers

机译:大功率掺b光纤激光器和放大器中的光暗化损耗分析

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Photodarkening(PD) in Yb-doped fiber is one of the power limiting factor for long-time operation in high power fiber lasers and amplifiers. In order to achieve Yb-doped fiber laser and amplifier with high output power, a steady-state rate equations considering the amplified spontaneous emission (ASE) and PD losses has been established. Thermal effects and output power characteristics of high power fiber laser and amplifier are investigated. Transverse and longitudinal temperature distributions in fibers have been calculated by solving thermal conduction equations. We theoretically analyzed the PD losses and temperature in Yb-doped fiber laser and amplifier, the simulation results show that with the PD losses increasing, then the laser power drop quickly and we find that higher doped concentration and larger PD losses will lead higher temperature, so we should choose suitable doped concentration fiber and decrease PD losses to achieve higher output power.
机译:掺Yb光纤中的光暗化(PD)是高功率光纤激光器和放大器中长时间运行的功率限制因素之一。为了实现具有高输出功率的掺Yb光纤激光器和放大器,建立了考虑放大的自发发射(ASE)和PD损耗的稳态速率方程。研究了大功率光纤激光器和放大器的热效应和输出功率特性。纤维中的横向和纵向温度分布已通过求解热传导方程进行了计算。我们从理论上分析了掺Yb光纤激光器和放大器中的PD损耗和温度,仿真结果表明,随着PD损耗的增加,激光功率迅速下降,我们发现较高的掺杂浓度和较大的PD损耗将导致较高的温度,因此,我们应该选择合适的掺杂浓度光纤并降低PD损耗以实现更高的输出功率。

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