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Spectrally Sampled OCT Imaging Based on 1.7-μm Continuous-Wave Supercontinuum Source

机译:基于1.7μm连续波超连续谱源的光谱采样OCT成像

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摘要

We demonstrate a novel multiwavelength light source around the 1.7-μm region based on continuous-wave (CW) supercontinuum (SC) generation for the deeper imaging of low-water-absorption sample with a spectrally sampled optical coherence tomography (OCT) system. This self-regulated Gaussian spectrum of CW SC source has an extremely smooth flat width with more than 210-nm full-width at half-maximum bandwidth centered at the 1.7-μm region, a high output power of 500 mW, and a low temporal instability with less than 0.1 dB for an hour. In order to improve the OCT signal sensitivity without increasing the optical illumination power, a multiwavelength light source based on this CW SC was implemented by using a tunable fiber Sagnac comb filter. When it was applied to the spectrally sampled OCT imaging, the multiwavelength light source enabled a dynamic range improvement, compared to conventional continuous spectral light source with the same average optical power.
机译:我们展示了一种基于连续波(CW)超连续谱(SC)生成的1.7μm区域周围的新型多波长光源,用于通过光谱采样光学相干层析成像(OCT)系统对低吸水率样品进行更深的成像。 CW SC源的这种自调节高斯光谱具有极其平滑的平坦宽度,在以1.7μm区域为中心的最大带宽的一半处具有超过210nm的全宽度,500 mW的高输出功率和较低的瞬态一个小时内的不稳定性低于0.1 dB。为了在不增加光学照明功率的情况下提高OCT信号灵敏度,通过使用可调光纤Sagnac梳状滤波器实现了基于此CW SC的多波长光源。当将其应用于光谱采样的OCT成像时,与具有相同平均光功率的常规连续光谱光源相比,多波长光源可实现动态范围的改善。

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