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Wavelength-Tunable Broadband Frequency-Domain OCT Source Based on Spatially Filtered Sub-10-fs Pulsed Laser

机译:基于空间滤波的Sub-10-fs脉冲激光器的波长可调宽带频域OCT源

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摘要

A wavelength swept broadband source based on a sub-10-femtosecond (fs) pulse laser and a spatial filtering method was developed for the application to frequency-domain optical coherence tomography (FD-OCT). The use of the sub-10-fs laser with a galvano scanner operating at a high repetition rate provided a fast tunable broadband light source, which tuned the spectral component across the spectral bandwidth of 110 nm at 1-kHz repetition rate. The spectrally filtered light beam had 0.5-nm instantaneous spectral linewidths at 1-mW average output power. The implemented FD-OCT system clearly imaged a narrow air gap between glass plates with an axial resolution of 5 $mu$m, which proved a potential for the application of a short pulse laser source to the FD-OCT system. The proposed wavelength swept source scheme can secure mode-hopping-free operation at fast tuning speed, which could be applicable for the FD-OCT system properly.
机译:研制了一种基于亚十飞秒(fs)脉冲激光的扫频宽带光源和一种空间滤波方法,用于频域光学相干断层扫描(FD-OCT)。将sub-10-fs激光器与以高重复频率运行的电扫描仪配合使用可提供快速可调的宽带光源,该光源以1 kHz的重复频率在110 nm的光谱带宽上调节光谱分量。经光谱滤波的光束在1mW平均输出功率下具有0.5nm的瞬时光谱线宽。已实施的FD-OCT系统清楚地成像了玻璃板之间的狭窄气隙,轴向分辨率为5μm,这证明了将短脉冲激光源应用于FD-OCT系统的潜力。所提出的波长扫频光源方案可以确保在快速调谐速度下无跳模操作,这可以适当地应用于FD-OCT系统。

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