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Investigation of single-polarized phosphate glass fiber laser and its self-pulsing behavior

机译:单偏振磷酸盐玻璃纤维激光器的研究及其自脉冲行为

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A compact short-cavity fiber laser configured with Er~(3+)/Yb~(3+) highly co-doped phosphate glass fiber which has linear polarization and single frequency output is fabricated experimentally. The threshold power of the laser is about 30mW, and larger than 100mW output power is achieved with slope efficiency of 20% at 1549nm. At the meantime, sine modulation, positive pulse and chaos state in the output power at different experimental condition are observed. And a new theoretical model is proposed to describe the mechanism of the observed intensity instability behavior in the fiber laser and the numerical results proved its feasibility. It is confirmed that the self-pulsing behavior is mainly caused by different small external feedback. So there is an efficient way to overcome self-pulsing behavior in the compact single polarized fiber laser by minimizing the external feedback.
机译:实验制备了由Er〜(3 +)/ Yb〜(3+)高共掺杂磷酸盐玻璃纤维构成的紧凑型短腔光纤激光器,该光纤具有线性偏振和单频输出。激光器的阈值功率约为30mW,在1549nm处的倾斜效率为20%时,可实现大于100mW的输出功率。同时,观察了不同实验条件下输出功率的正弦调制,正脉冲和混沌状态。提出了一个新的理论模型来描述光纤激光器中观察到的强度不稳定性行为的机理,数值结果证明了其可行性。可以确定,自脉冲行为主要是由不同的较小外部反馈引起的。因此,存在一种通过使外部反馈最小化来克服紧凑型单偏振光纤激光器中自脉冲行为的有效方法。

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