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High-speed polygon-scanner-based wavelength-swept laser source in the telescope-less configurations with application in optical coherence tomography

机译:无望远镜配置的基于多边形扫描仪的高速扫频激光源在光学相干断层扫描中的应用

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摘要

A compact high-speed tuning laser source is demonstrated in two different configurations using a polygonal mirror scanner without a telescope. It is shown that the filter configuration finesse increases by utilizing multiple reflections from the polygon facet(s) and grating illumination(s). Theoretically, the free spectral range (FSR), the instantaneous linewidth, and the finesse of each filter configuration are derived. For single grating illumination, the measured coherence length, FSR, and power were 2.8 mm, 184 nm, and 40 mW at the scanning frequency of 50 kHz, respectively. Coherence length, FSR, and power of the second laser configuration were 6.2 mm, 117 nm, and 35 mW, respectively. Finally, images of a human finger were acquired in vivo using two proposed swept-source configurations.
机译:使用不带望远镜的多角镜扫描仪以两种不同的配置展示了紧凑型高速调谐激光源。示出了通过利用来自一个或多个多边形小面的多次反射和一个或多个光栅照明,滤波器配置的精细度增加。从理论上讲,可以得出每个滤波器配置的自由光谱范围(FSR),瞬时线宽和精度。对于单光栅照明,在50 kHz的扫描频率下,测得的相干长度,FSR和功率分别为2.8 mm,184 nm和40 mW。第二种激光器配置的相干长度,FSR和功率分别为6.2 mm,117 nm和35 mW。最后,使用两种提议的扫频源配置在体内获取了人的手指图像。

著录项

  • 作者

    Motaghian Nezam S. M. R.;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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