Full-field swept-source optical coherence tomography with Gaussian spectral shaping

S. Dubey, G. Sheoran, T. Anna, A. Anand, D. Mehta, C. Shakher
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引用次数: 4

Abstract

A swept source system was realized in the wavelength range of 810-875 nm with the combination of a broad-band superluminescent diode (SLD) and an acousto-optic tunable filter (AOTF) as a frequency-tuning device. SLD has two spectral centers at 820 nm and 845 nm with spectral bandwidth (FWHM) of around 40 nm. Gaussian spectral shaping was performed onto the original SLD spectrum while reconstructing OCT images for various test samples such as onion slice and fingerprint impression taken on a glass substrate. As a pulse can be considered a Gaussian distribution of frequencies, spectral shaping yields sharper Fourier peaks. Application of Gaussian spectrum facilitates in precisely locating the reflective boundaries within the sample that results in improved OCT images.
高斯光谱整形的全场扫描源光学相干层析成像
采用宽带超发光二极管(SLD)和声光可调谐滤波器(AOTF)作为频率调谐器件,在810 ~ 875 nm波长范围内实现了扫频源系统。SLD在820 nm和845 nm处有两个光谱中心,光谱带宽(FWHM)约为40 nm。在重建各种测试样品(如洋葱片和玻璃基板上的指纹印)的OCT图像时,对原始SLD光谱进行高斯光谱整形。由于脉冲可以被认为是频率的高斯分布,频谱整形产生更尖锐的傅立叶峰。高斯光谱的应用有助于精确定位样品内的反射边界,从而改善OCT图像。
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