Varghese Babu, Rajan Vinayakrishnan, Van Leeuwen Ton G, Steenbergen Wiendelt
Institute for Biomedical Technology, Biophysical Engineering Group, University of Twente, P.O. Box 217, NL-7500AE Enschede, The Netherlands.
Rev Sci Instrum. 2007 Dec;78(12):126103. doi: 10.1063/1.2823558.
The performance of a graded index multimode fiber optic low coherence Mach-Zehnder interferometer with phase modulation is analyzed. Investigated aspects were its ability to measure path length distributions and to perform path length resolved Doppler measurements of multiple scattered photons in a turbid suspension of particles undergoing Brownian and translational motion. The path length resolution of this instrument is compared with a system using single mode fibers for illumination and detection. The optical path lengths are determined from the zero order moment of the phase modulation peak in the power spectrum. The weighted first moment, which is equal to the average Doppler shift, shows a linear response for different mean flow velocities within the physiological range.
分析了具有相位调制的渐变折射率多模光纤低相干马赫曾德尔干涉仪的性能。研究的方面包括其测量路径长度分布的能力,以及对经历布朗运动和平移运动的颗粒混浊悬浮液中多次散射光子进行路径长度分辨多普勒测量的能力。将该仪器的路径长度分辨率与使用单模光纤进行照明和检测的系统进行了比较。光程长度由功率谱中相位调制峰的零阶矩确定。加权一阶矩等于平均多普勒频移,在生理范围内对不同的平均流速呈现线性响应。