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Energy scaling of a multipass-cavity mode-locked femtosecond bulk laser with a carbon nanotube saturable absorber

机译:碳纳米管可饱和吸收器的多腔腔锁模飞秒体激光器的能量缩放

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摘要

In the design of mode-locked lasers, single-walled carbon nanotube saturable absorbers (SWCNT-SAs) have emerged as important alternatives to semiconductor saturable absorber mirrors (SESAMs) due to their favorable optical characteristics, low cost, and relatively simple fabrication scheme. Therefore, it is of great interest to explore the limits of energy scaling in solid-state lasers mode-locked with SWCNT-SAs. Due to their unique wavelength range for biomedical applications, a room-temperature Cr~(4+):forsterite laser operating near 1.3 μm was used in the mode-locking experiments. The laser was end-pumped with a continuous-wave Yb-fiber laser at 1064 ran. Furthermore, a q-preserving multipass-cavity (MPC) was added to the short resonator to lower the pulse repetition rate to 4.51 MHz and to scale up the output pulse energy at low average power. The SWCNT-SA was fabricated with SWCNTs grown by the high-pressure CO conversion (HiPCO) technique. With dispersion compensation optics, the net group delay dispersion of the resonator was estimated to be around -4440 fs~2. When mode-locked with the SWCNT-SA, the resonator produced 10-nJ, 121 -fs pulses at 1247 run with a spectral bandwidth of 16 nm, corresponding to a time-bandwidth product of 0.37. To our knowledge, this represents the highest peak power (84 kW) generated to date from a bulk femtosecond solid-state laser, mode-locked by using a SWCNT-SA. The results also suggest that the peak power achieved in our experiments was limited only by the self-focusing in the Cr~(4+):forsterite gain medium and further increase in output energy should in principle be possible in other gain media mode-locked with SWCNT-SAs.
机译:在锁模激光器的设计中,单壁碳纳米管可饱和吸收体(SWCNT-SA)成为半导体可饱和吸收体镜(SESAM)的重要替代品,因为它们具有良好的光学特性,低成本和相对简单的制造方案。因此,在用SWCNT-SA锁模的固态激光器中探索能量缩放的极限非常重要。由于其在生物医学应用中的独特波长范围,在锁模实验中使用了工作在1.3μm附近的室温Cr〜(4+):镁橄榄石激光器。用连续波Yb光纤激光器在1064 nm下对激光器进行泵浦。此外,在短谐振器中添加了一个保q多通腔(MPC),以将脉冲重复频率降低至4.51 MHz,并以低平均功率放大输出脉冲能量。 SWCNT-SA是用通过高压CO转换(HiPCO)技术生长的SWCNT制造的。使用色散补偿光学器件,谐振器的净群时延色散估计约为-4440 fs〜2。当用SWCNT-SA锁模时,谐振器在1247产生10-nJ,121-fs脉冲,其光谱带宽为16 nm,对应于0.37的时间带宽积。据我们所知,这代表了迄今为止最大的峰值功率(84 kW),它是通过使用SWCNT-SA锁模的大容量飞秒固态激光器产生的。结果还表明,在我们的实验中达到的峰值功率仅受Cr〜(4+):镁橄榄石增益介质中的自聚焦限制,并且在其他增益介质锁模的情况下,原则上应该有可能进一步提高输出能量与SWCNT-SA。

著录项

  • 来源
    《Solid state lasers XXII: technology and devices》|2013年|859914.1-859914.7|共7页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Laser Research Laboratory, Department of Physics, Department of Electrical-Electronics Engineering, K09 University Rumelifeneri, Sariyer, Istanbul, 34450, Turkey;

    College of Arts and Sciences, Bahcesehir University, Besiktas, Istanbul, 34353, Turkey;

    Laser Research Laboratory, Department of Physics, Department of Electrical-Electronics Engineering, K09 University Rumelifeneri, Sariyer, Istanbul, 34450, Turkey;

    Department of Physics Division of Energy Systems Research, Ajou University,443-749 Suwon, Republic of Korea;

    Department of Physics Division of Energy Systems Research, Ajou University,443-749 Suwon, Republic of Korea;

    Department of Physics Division of Energy Systems Research, Ajou University,443-749 Suwon, Republic of Korea;

    Max Born Institute for Nonlinear Optics and Ultrafast Spectroscopy, 2A Max-Born-Str., 12489 Berlin, Germany;

    Max Born Institute for Nonlinear Optics and Ultrafast Spectroscopy, 2A Max-Born-Str., 12489 Berlin, Germany;

    Laser Research Laboratory, Department of Physics, Department of Electrical-Electronics Engineering, K09 University Rumelifeneri, Sariyer, Istanbul, 34450, Turkey;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Single walled carbon nanotube saturable absorber (SWCNT-SA); multipass-cavity (MPC); energy scaling; Cr~(4+):forsterite laser;

    机译:单壁碳纳米管可饱和吸收剂(SWCNT-SA);多通道腔(MPC);能量缩放Cr〜(4+):镁橄榄石激光;
  • 入库时间 2022-08-26 13:45:26

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