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Mode-locked erbium-doped fiber laser via evanescent field interaction with indium tin oxide

机译:通过与氧化铟锡的渐逝场相互作用,通过蒸发型掺铒光纤激光器

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摘要

Light-matter interaction inside EDFL cavity was achieved by incorporating indium tin oxide onto D-shape fiber using electron-beam deposition technique. The D-shape fiber was fabricated using a homemade rotating wheel to expose evanescent field on the surface of single-mode optical fiber. The D-shape fiber sample possesses a remaining fiber diameter of 90 mu m with 2 dB insertion loss. Our SA device successfully induced stable mode-locked at the operating wavelength of 1561.5 nm. Linear absorption by our SA was observed to be 2 dB at 1.55 mu m region and saturable absorption was measured to be 4% with a saturable intensity of 40.32 MW/cm(2). As a result, it was observed that the ITO-D-shape fiber generated pulses of as short as 1.13 ps with a stable repetition rate around 974.8 kHz as the pump power was adjusted within 104.62 mW to 187.04 mW. We confirmed stable pulses as the radio frequency spectrum analyzer displayed a fundamental frequency with high signal-to-noise ratio of 70 dB.
机译:通过使用电子束沉积技术将氧化铟锡掺入D形光纤上来实现EDFL腔内的浅型相互作用。使用自制旋转轮制造D形光纤,以暴露在单模光纤表面上的渐逝场。 D形纤维样品具有90μm的剩余纤维直径,具有2 dB插入损耗。我们的SA器件成功地诱导稳定模式锁定在1561.5 nm的工作波长。观察到我们的SA的线性吸收为2dB,在1.55μm,测量可饱和吸收为4%,可饱和强度为40.32mW / cm(2)。结果,观察到ITO-D形光纤产生的脉冲短至1.13ps,稳定重复率为974.8 kHz,因为泵电量在104.62mw至187.04 mw内调节。当射频频谱分析仪显示出具有70 dB的高信噪比的基本频率时,我们确认了稳定的脉冲。

著录项

  • 来源
    《Optical fiber technology》 |2020年第3期|102124.1-102124.5|共5页
  • 作者单位

    Univ Malaya Fac Engn Dept Elect Engn Photon Engn Lab Kuala Lumpur 50603 Malaysia;

    Univ Teknol Malaysia Fac Sci Dept Phys Skudai 81310 Johor Malaysia;

    Univ Malaya Fac Sci Dept Phys Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Engn Dept Elect Engn Photon Engn Lab Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Engn Dept Elect Engn Photon Engn Lab Kuala Lumpur 50603 Malaysia;

    Univ Teknol Malaysia Fac Sci Dept Phys Skudai 81310 Johor Malaysia;

    Univ Malaya Fac Engn Dept Elect Engn Photon Engn Lab Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Sci Low Dimens Mat Res Ctr Dept Phys Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Engn Dept Elect Engn Photon Engn Lab Kuala Lumpur 50603 Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 21:28:56

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