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Temperature effects in core-pumped Yb fibers and their correlation to photodarkening

机译:抽芯Y光纤中的温度效应及其与光暗化的关系

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Summary form only given. Owing to their high beam quality and enormous power scalability, Yb-doped fiber lasers and amplifiers are currently employed for many scientific and industrial applications. However, photodarkening losses and high operating temperatures can limit their performance or even destroy the laser itself. PD loss reduces the laser efficiency during run-time of fiber laser. Technically, this problem can be compensated by enhancing the pump power. But it has been shown that beyond the quantum defect caused by the Stokes shift, also PD losses contribute to the heat load of a fiber laser and thereby can cause damage at high power. Another consequence of heat load is the significant reduction of the beam quality as well as the transverse mode instability threshold [1]. The appropriate solution for overcoming this limitation is the drastic reduction of PD, which can be achieved by co-doping, e.g. with phosphorous, aluminium and cerium.
机译:仅提供摘要表格。由于其高光束质量和巨大的功率可扩展性,掺Y光纤激光器和放大器目前被许多科学和工业应用所采用。但是,光暗损耗和高工作温度会限制其性能,甚至会损坏激光器本身。 PD损耗会降低光纤激光器运行期间的激光器效率。从技术上讲,可以通过提高泵浦功率来补偿此问题。但是已经表明,除了由斯托克斯频移引起的量子缺陷之外,PD损耗还会增加光纤激光器的热负荷,从而在高功率下会造成损坏。热负荷的另一个结果是光束质量的显着降低以及横向模式不稳定性阈值[1]。克服这一局限性的合适解决方案是大幅度降低PD,这可以通过共掺杂,例如通过掺杂来实现。含磷,铝和铈。

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