首页> 外文会议>Conference on Applied Optics and Photonics China >1Increasing Power and Amplified Spontaneous Emission Suppression for Weak Signal Amplification in Pulsed Fiber Amplifier
【24h】

1Increasing Power and Amplified Spontaneous Emission Suppression for Weak Signal Amplification in Pulsed Fiber Amplifier

机译:1提高功率和放大的自发发射抑制,用于脉冲光纤放大器中的弱信号放大

获取原文

摘要

In the pulsed fiber amplifiers with repetition frequency of several tens kHz, amplified spontaneous emission (ASE) is easy to build up because of the low repetition frequency and weak pulse signal. The ASE rises the difficulty to amplify the weak pulse signal effectively. We have demonstrated an all-fiber preamplifier stage structure to amplify a 40 kHz, 10 ns bandwidth (FWHM) weak pulse signal (299 礧) with center wavelength of 1062 nm. Compared synchronous pulse pump with continuous wave(CW) pump, the results indicate that synchronous pulse pump shows the better capability of increasing the output power than CW pump. In the condition of the same pump power, the output power of synchronous pulse pump is twice as high as CW pump. In order to suppress ASE, a longer gain fiber is utilized to reabsorb the ASE in which the wavelength is shorter than 1062nm. We amplified weak pulse signal via 0.8 m and 2.1 m gain fiber in synchronous pulse pump experiments respectively, and more ASE in the output spectra are observed in the 0.8 m gain fiber system. Due to the weaker ASE and consequent capability of higher pump power, the 2.1 m gain fiber is capable to achieve higher output power than shorter fiber. The output power of 2.1 m gain fiber case is limited by pump power.
机译:在重复频率为几十kHz的脉冲光纤放大器中,由于重复频率低和脉冲信号弱,因此容易建立放大的自发发射(ASE)。 ASE增加了有效放大弱脉冲信号的难度。我们已经展示了一种全光纤前置放大器级结构,以放大中心波长为1062 nm的40 kHz,10 ns带宽(FWHM)弱脉冲信号(299礧)。将同步脉冲泵与连续波(CW)泵进行比较,结果表明,同步脉冲泵比CW泵具有更好的增加输出功率的能力。在相同的泵浦功率条件下,同步脉冲泵浦的输出功率是CW泵浦的两倍。为了抑制ASE,使用更长增益的光纤重新吸收波长小于1062nm的ASE。我们分别在同步脉冲泵实验中通过0.8 m和2.1 m增益光纤放大了弱脉冲信号,并且在0.8 m增益光纤系统中观察到了更多的ASE光谱。由于ASE较弱,因此具有更高的泵浦功率,因此2.1 m增益光纤比短光纤具有更高的输出功率。 2.1 m增益光纤盒的输出功率受到泵浦功率的限制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号