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Characterization of Fourier domain mode-locked wavelength swept laser for optical coherence tomography imaging

机译:用于光学相干层析成像的傅里叶域锁模波长扫频激光器的表征

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摘要

We present characteristics of a wavelength swept laser with a scanning fiber Fabry-Perot filter at 1300 nm. We investigate the dependence of the scanning frequencies in the swept laser. In conventional wavelength swept lasers, the relative intensity of the laser output decreases significantly as the scanning frequency increases. The peak wavelength of the output spectrum is red-shifted due to the nonlinear frequency downshifting in the semiconductor optical amplifier (SOA). In the Fourier domain mode-locked (FDML) wavelength swept laser, we investigate transient intensity profiles and the full width at half maximum in response to the injection currents and detuning of the scanning frequency. The degradation of the scanning range of the swept laser is caused by the deviation from the scanning frequency at 45.6 kHz. In addition, transient intensity profiles show significant asymmetric behavior in response to the detuned frequencies. Finally, the axial resolution and sensitivity as a function of imaging depth are analyzed for both forward and backward scans. With the FDML laser, the detection sensitivity up to 102 dB is achieved for the backward scans. The backward scans exhibit higher axial resolution and sensitivity than the forward scan.
机译:我们介绍了在1300 nm处具有扫描光纤Fabry-Perot滤光片的波长扫描激光器的特性。我们调查扫频激光器中扫描频率的依赖性。在传统的波长扫描激光器中,随着扫描频率的增加,激光输出的相对强度会显着降低。由于半导体光放大器(SOA)中的非线性频率下移,输出光谱的峰值波长发生了红移。在傅立叶域锁模(FDML)波长扫频激光器中,我们研究了瞬态强度曲线和响应于注入电流和扫描频率失谐的半高全宽。扫频激光器扫描范围的降低是由与45.6 kHz处扫描频率的偏差引起的。此外,瞬态强度曲线显示出对失谐频率的明显不对称行为。最后,分析了轴向分辨率和灵敏度与成像深度的关系,以进行正向和反向扫描。使用FDML激光器,向后扫描可实现高达102 dB的检测灵敏度。向后扫描比向前扫描显示更高的轴向分辨率和灵敏度。

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