Weiss Nicolás, van Leeuwen Ton G, Kalkman Jeroen
Opt Express. 2015 Feb 9;23(3):3448-59. doi: 10.1364/OE.23.003448.
We report on the simultaneous and localized measurement of the diffusion coefficient and flow velocity based on the normalized autocorrelation function using optical coherence tomography (OCT). Our results on a flowing suspension of polystyrene spheres show that the flow velocity and the diffusion coefficient can be reliably estimated in a regime determined by the sample diffusivity, the local flow velocity, and the Gaussian beam waist. We experimentally demonstrate that a smaller beam waist results in an improvement of the velocity sensitivity at the expense of the precision and accuracy of the estimation of the diffusion coefficient. Further, we show that the decay of the OCT autocorrelation function due to flow depends only on the Gaussian beam waist irrespective of the sample position with respect to the focus position.
我们报告了基于归一化自相关函数,利用光学相干断层扫描(OCT)对扩散系数和流速进行同时局部测量的情况。我们对聚苯乙烯球体流动悬浮液的研究结果表明,在由样品扩散率、局部流速和高斯光束腰斑决定的范围内,可以可靠地估计流速和扩散系数。我们通过实验证明,较小的光束腰斑会提高速度灵敏度,但以牺牲扩散系数估计的精度和准确性为代价。此外,我们表明,由于流动导致的OCT自相关函数的衰减仅取决于高斯光束腰斑,而与样品相对于焦点位置的位置无关。