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Optimization of a dispersion-tuned wavelength-swept fiber laser for optical coherence tomography

机译:光学相干断层扫描的色散调谐波长光纤激光器的优化

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摘要

We optimized parameters of a dispersion-tuned wavelength-swept fiber laser by numerically analyzing dynamic characteristics. The optimized laser is experimentally demonstrated and applied to the swept-source optical coherence tomography (SS-OCT) system. The dispersion-tuned wavelength-swept laser (DT-WSL) is a unique tunable fiber laser, whose lasing wavelength can be tuned rapidly without any mechanical tunable filters. Although the wavelength of a DT-WSL can be swept rapidly and widely, the broadening of the instantaneous spectral width at a high sweep rate has been a critical drawback for SS-OCT applications. Numerical simulations have shown that higher modulation frequencies for active mode-locking lead to narrower instantaneous spectral widths. However, a lower modulation frequency is needed to achieve a wider wavelength tuning range. Pulse modulation is employed to solve the trade-off between instantaneous spectral width and wavelength tuning range. In this paper, the characteristics of a sinusoidally modulated and a pulse-modulated DT-WSL are compared numerically and experimentally. The numerical simulation results show that a pulse-modulated laser can achieve spectral widths as narrow as that of the sinusoidally modulated laser with >5 GHz modulation frequency, even when the pulse modulation frequency is as low as 500 MHz. We also study the difference in the laser characteristics with different sweep directions and discover that a positive wavelength sweep leads to a narrower instantaneous spectral width. We also experimentally confirmed that pulse modulation can indeed achieve a narrower spectral width, as expected from our numerical simulation results. The pulse-modulated DT-WSL is then used in an SS-OCT system and successfully achieves a coherence length of 1.3 mm, whereas that of a sinusoidally modulated DT-WSL is limited to only 0.7 mm. Furthermore, we experimentally compare the performance difference in OCT imaging with different wavelength sweep directions, and the results proved that it is advantageous to apply a positive wavelength sweep, as predicted by our numerical simulation. (C) 2016 Optical Society of America
机译:通过数值分析动态特性,我们优化了色散调谐波长光纤激光器的参数。通过实验证明优化的激光器并应用于扫描源光学相干断层扫描(SS-OCT)系统。分散调谐的波长扫描激光器(DT-WSL)是一种独特的可调谐光纤激光器,其激光波长可以快速调谐,而没有任何机械可调谐过滤器。尽管可以迅速且广泛地扫描DT-WSL的波长,但是以高扫描速率的瞬时光谱宽度扩展已经是SS-OCT应用的关键缺点。数值模拟表明,用于主动模式锁定的更高调制频率导致瞬时速度宽度较窄。然而,需要更低的调制频率来实现更广泛的波长调谐范围。采用脉冲调制来解决瞬时光谱宽度和波长调谐范围之间的折衷。在本文中,在数值和实验上比较了正弦调制和脉冲调制的DT-WSL的特性。数值模拟结果表明,即使当脉冲调制频率低至500MHz时,脉冲调制激光器也可以实现与具有> 5 GHz调制频率的正弦调制激光器的光谱宽度。我们还研究了具有不同扫描方向的激光特性的差异,并发现正波长扫描导致较窄的瞬时光谱宽度。我们还通过我们的数值模拟结果预期的预期,我们还在实验证实脉冲调制确实可以实现更窄的光谱宽度。然后在SS-OCT系统中使用脉冲调制的DT-WSL,并成功实现了1.3mm的相干长度,而正弦调制的DT-WSL的相干长度仅限于仅0.7mm。此外,我们通过我们的数值模拟预测,通过实验地比较OCT成像的性能差异,结果证明了施加正波长扫描是有利的。 (c)2016年美国光学学会

著录项

  • 来源
    《Applied optics》 |2016年第27期|共7页
  • 作者单位

    Univ Tokyo Res Ctr Adv Sci &

    Technol Meguro Ku 4-6-1 Komaba Tokyo 1538904 Japan;

    Univ Tokyo Res Ctr Adv Sci &

    Technol Meguro Ku 4-6-1 Komaba Tokyo 1538904 Japan;

    Univ Tokyo Res Ctr Adv Sci &

    Technol Meguro Ku 4-6-1 Komaba Tokyo 1538904 Japan;

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  • 正文语种 eng
  • 中图分类 应用;
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