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使用1.56微米全光纤激光系统产生高功率类噪声脉冲

High-power noise-like pulse generation using a 1.56-µm all-fiber laser system.

作者信息

Lin Shih-Shian, Hwang Sheng-Kwang, Liu Jia-Ming

出版信息

Opt Express. 2015 Jul 13;23(14):18256-68. doi: 10.1364/OE.23.018256.

Abstract

We demonstrated an all-fiber, high-power noise-like pulse laser system at the 1.56-µm wavelength. A low-power noise-like pulse train generated by a ring oscillator was amplified using a two-stage amplifier, where the performance of the second-stage amplifier determined the final output power level. The optical intensity in the second-stage amplifier was managed well to avoid not only the excessive spectral broadening induced by nonlinearities but also any damage to the device. On the other hand, the power conversion efficiency of the amplifier was optimized through proper control of its pump wavelength. The pump wavelength determines the pump absorption and therefore the power conversion efficiency of the gain fiber. Through this approach, the average power of the noise-like pulse train was amplified considerably to an output of 13.1 W, resulting in a power conversion efficiency of 36.1% and a pulse energy of 0.85 µJ. To the best of our knowledge, these amplified pulses have the highest average power and pulse energy for noise-like pulses in the 1.56-µm wavelength region. As a result, the net gain in the cascaded amplifier reached 30 dB. With peak and pedestal widths of 168 fs and 61.3 ps, respectively, for the amplified pulses, the pedestal-to-peak intensity ratio of the autocorrelation trace remains at the value of 0.5 required for truly noise-like pulses.

摘要

我们展示了一个工作在1.56微米波长的全光纤高功率类噪声脉冲激光系统。由环形振荡器产生的低功率类噪声脉冲序列通过两级放大器进行放大,其中第二级放大器的性能决定了最终的输出功率水平。对第二级放大器中的光强进行了良好管理,不仅避免了由非线性效应引起的过度光谱展宽,还防止了对器件的任何损坏。另一方面,通过适当控制放大器的泵浦波长来优化其功率转换效率。泵浦波长决定了泵浦吸收,进而决定了增益光纤的功率转换效率。通过这种方法,类噪声脉冲序列的平均功率大幅放大至13.1瓦的输出,功率转换效率达到36.1%,脉冲能量为0.85微焦。据我们所知,这些放大后的脉冲在1.56微米波长区域的类噪声脉冲中具有最高的平均功率和脉冲能量。结果,级联放大器的净增益达到30分贝。对于放大后的脉冲,其峰值宽度和基座宽度分别为168飞秒和61.3皮秒,自相关迹线的基座与峰值强度比保持在真正类噪声脉冲所需的0.5值。

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