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Effect of steady-state conditions on self-pulsing characteristics of Yb-doped cw fiber lasers

机译:稳态条件对掺Yb连续波光纤激光器自脉冲特性的影响

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摘要

Fiber laser resonator configurations have been analyzed theoretically on the basis of steady-state rate equations to optimize the laserconversion efficiency. Evolution of the pump- and signal powers and the saturated gain coefficient along the length of the laser medium has been simulated for high- and low-finesse resonators in forward- and backward pumping schemes. The corresponding fiber laser configurations have been setup to verify the results of simulation. Backward pumping configuration in an Yb-doped fiber laser has been found to be the most efficient, and in this configuration a maximum cw output power of 10.75 W in single transverse mode with an optical-to-optical conversion efficiency of 62.5percent has been achieved. The laser output spectrum was peaked at 1093 nm with full-width at half-maximum (FWHM) line-width of about 9 nm. In the low-finesse resonator configuration, it has been found that experimental observations differ from theoretical simulation results. In this case, output power from both ends ceases to increase linearly beyond 1.8 W, and starts fluctuating due to the onset of strong random self-pulsing phenomenon. Our investigation shows that a non-uniform steady-state gain along the fiber length facilitates the self-pulsing process.
机译:理论上已经根据稳态速率方程对光纤激光谐振器的配置进行了分析,以优化激光转换效率。在前向和后向泵浦方案中,已经针对高和低精微谐振器模拟了泵浦和信号功率以及饱和增益系数沿激光介质长度的变化。已经设置了相应的光纤激光器配置,以验证仿真结果。已发现掺Yb光纤激光器中的向后泵浦配置是最有效的,在此配置中,单横向模式下的最大cw输出功率已达到10.75 W,光-光转换效率为62.5% 。激光输出光谱在1093 nm处达到峰值,半峰全宽(FWHM)的线宽约为9 nm。在低精细谐振器配置中,已经发现实验观察与理论仿真结果不同。在这种情况下,由于强烈的随机自脉冲现象的出现,两端的输出功率不再线性增加超过1.8 W,而开始波动。我们的研究表明,沿着光纤长度的不均匀稳态增益会促进自脉冲过程。

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