Amiot Caroline G, Ryczkowski Piotr, Friberg Ari T, Dudley John M, Genty Goëry
Opt Express. 2019 Aug 19;27(17):24114-24122. doi: 10.1364/OE.27.024114.
We demonstrate experimentally ghost optical coherence tomography using a broadband incoherent supercontinuum light source with shot-to-shot random spectral fluctuations. The technique is based on ghost imaging in the spectral domain where the object is the spectral interference pattern generated from an optical coherence tomography interferometer in which a physical sample is placed. The axial profile of the sample is obtained from the Fourier transform of the correlation between the spectrally resolved intensity fluctuations of the supercontinuum and the integrated signal measured at the output of the interferometer. The results are in excellent agreement with measurements obtained from a conventional optical coherence tomography system.
我们通过使用具有逐次随机光谱波动的宽带非相干超连续谱光源,对鬼光学相干断层扫描进行了实验演示。该技术基于光谱域中的鬼成像,其中物体是由放置了物理样本的光学相干断层扫描干涉仪产生的光谱干涉图样。样本的轴向轮廓是通过超连续谱的光谱分辨强度波动与在干涉仪输出端测得的积分信号之间的相关性的傅里叶变换得到的。结果与从传统光学相干断层扫描系统获得的测量结果非常吻合。