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Peak power scaling of thulium-doped ultrafast fiber laser systems

机译:掺杂超超速光纤激光系统的峰值功率缩放

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We investigate challenges for scaling the output peak power of thulium-doped fiber chirped-pulse amplification systems (FCPA) to and beyond the GW-level. A major limitation for reaching high peak powers in the 2 μm regime is the presence of strong water vapor absorption features that cause detrimental propagation effects in the spatial and the temporal domain. Based on the investigation and understanding of these effects mitigation strategies have been developed, that have been one of the keys to demonstrate a new record pulse peak power of more than 200 MW from a thulium-based ultrafast fiber laser. Future experiments can ultimately lead to a further increase of pulse peak power way beyond the GW-level.
机译:我们调查将掺杂纤维啁啾脉冲放大系统(FCPA)的输出峰值缩放到GW级别的挑战。在2μm制度中达到高峰功率的主要限制是存在强大的水蒸气吸收特征,其在空间和时间域中导致有害的传播效应。基于对这些影响的调查和理解,已经开发了缓解策略,这是一种从基于分子的超快光纤激光器展示超过200兆瓦的新记录脉冲峰值功率之一。未来的实验最终可能导致脉冲峰值电力方式的进一步增加,超出了GW水平。

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