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首页> 外文期刊>Advances in condensed matter physics >Submicrosecond Q-Switching Er-Doped All-Fiber Ring Laser Based on Black Phosphorus
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Submicrosecond Q-Switching Er-Doped All-Fiber Ring Laser Based on Black Phosphorus

机译:基于黑色磷的亚倍半标秒Q切换ER掺杂的全光纤环激光

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摘要

Black phosphorus (BP), a new two-dimensional (2D) material, has been deeply developed for extensive applications in electronics and optoelectronics due to its similar physical structure to graphene and thickness dependent direct band gap. Here, we demonstrated a submicrosecond passive Q-switching Er-doped fiber laser with BP as saturable absorber (SA). The BP saturable absorber was fabricated by mechanical exfoliation method. By taking full advantage of the ultrafast relaxation time of BP-SA and careful design of compact ring cavity, we obtained stable Q-switching pulses output with a shortest duration as narrow as 742?ns. With increasing the pump power, the pulse repetition rate accreted gradually almost linearly from 9.78 to 61.25?kHz, and the pulse duration declined rapidly at lower pump power regime and retained approximate stationary at higher pump power regime from 3.05 to 0.742?μs. The experimental results indicate that BP-SA can be an effective SA for nanosecond Q-switching pulse generation.
机译:黑色磷(BP),一种新的二维(2D)材料,已经深入了解电子和光电子的广泛应用,由于其与石墨烯和厚度依赖性直接带隙相似。在这里,我们展示了具有BP作为可饱和吸收器(SA)的亚硫磺克隆无源Q切换ER掺杂光纤激光器。通过机械剥离方法制造BP可饱和吸收剂。通过充分利用BP-SA的超快弛豫时间和仔细设计紧凑型环腔,我们获得了稳定的Q开关脉冲输出,持续时间最短为742?NS。随着泵浦的增加,脉冲重复速率从9.78逐渐增加到9.78至61.25?KHz,脉冲持续时间在较低的泵电力调节中迅速下降,并在从3.05到0.742的较高泵电源方案处保持近似静止。实验结果表明,BP-SA可以是用于纳秒Q切换脉冲产生的有效SA。

著录项

  • 来源
    《Advances in condensed matter physics》 |2017年第2017期|共4页
  • 作者单位

    SZU-NUS Collaborative Innovation Center for Optoelectronic Science &

    Technology;

    SZU-NUS Collaborative Innovation Center for Optoelectronic Science &

    Technology;

    SZU-NUS Collaborative Innovation Center for Optoelectronic Science &

    Technology;

    SZU-NUS Collaborative Innovation Center for Optoelectronic Science &

    Technology;

    SZU-NUS Collaborative Innovation Center for Optoelectronic Science &

    Technology;

    SZU-NUS Collaborative Innovation Center for Optoelectronic Science &

    Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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