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首页> 外文期刊>Journal of the Optical Society of America B: Optical Physics >Effects of excited-state absorption on self-pulsing in Tm3+-doped fiber lasers
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Effects of excited-state absorption on self-pulsing in Tm3+-doped fiber lasers

机译:Tm3 +掺杂光纤激光器中激发态吸收对自脉冲的影响

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摘要

Based on theoretical analysis and numerical simulation, the mechanism of self-pulsing operation of 2 - μ m Tm 3 + -doped fiber lasers is explored. A simplified rate-equation model is proposed to analyze stable operation of Tm 3 + -doped fiber lasers. It is shown that the continuous-wave (CW) solution does not exist for certain pump intensities when excited-state absorption (ESA) is included. In numerical simulation, four energy-transfer processes are calculated to identify the origin of self-pulsing in Tm 3 + -doped fiber lasers. The phonon-assisted ESA process H 5 3 → H 4 3 is identified as the key factor for self-pulsing in Tm 3 + -doped fiber lasers, which confirms the absence of a CW solution in the theoretical analysis. The numerical simulation gives out a regular pulse train, whose characteristics are in excellent agreement with the experimental results. The impacts of ESA cross section and pump intensity on the self-pulsing characteristics are also investigated.
机译:在理论分析和数值模拟的基础上,探讨了掺有2μmTm 3 +的光纤激光器的自脉冲运行机理。提出了一种简化的速率方程模型来分析掺有Tm 3 +的光纤激光器的稳定工作。结果表明,当包含激发态吸收(ESA)时,对于某些泵浦强度,不存在连续波(CW)解决方案。在数值模拟中,计算了四个能量转移过程,以识别Tm 3 +掺杂光纤激光器中自脉冲的起源。声子辅助的ESA过程H 5 3→H 4 3被确定为掺Tm 3 +光纤激光器中自脉冲的关键因素,这证实了理论分析中不存在连续波解决方案。数值模拟给出了规则的脉冲序列,其特性与实验结果非常吻合。还研究了ESA横截面和泵浦强度对自脉冲特性的影响。

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