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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Optical properties effects upon the collection efficiency of optical fibers in different probe configurations
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Optical properties effects upon the collection efficiency of optical fibers in different probe configurations

机译:光学性质对不同探针配置中光纤的收集效率效果

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摘要

When optical fibers are used for delivery and collection of light, two major factors affect the measurement of collected light: 1) light transport in the medium from the source to the detection fiber and 2) light coupling to the optical fiber (which depends on the angular distribution of photons entering the fiber). This paper studies the latter factor, describing how the efficiency of the coupling depends on the optical properties of the sample. The coupling dependence on optical properties is verified by comparing experimental data to a simple diffusion model and to a Monte Carlo (MC)-corrected diffusion model. Mean square errors were 7.9% and 1.4% between experiments and the diffusion, and experiments and the MC-corrected models, respectively. The efficiency of coupling was shown to be highly dependent on the numerical aperture (NA) of the optical fiber. However, for lower scattering, such as in soft tissues, the efficiency of coupling could vary two- and threefold from that predicted by fiber NA. The collection efficiency can be used as a practical guide for choosing optical fiber-based systems for biomedical applications.
机译:当光纤用于输送和收集光时,两个主要因素会影响收集的光的测量:1)从源头到检测光纤中的介质中的光传输,2)光耦合到光纤(这取决于进入纤维的光子的角分布)。本文研究后一种因素,描述了耦合效率如何取决于样品的光学性质。通过将实验数据与简单的扩散模型和蒙特卡罗(MC)校正扩散模型进行比较来验证对光学性质的耦合依赖性。在实验和扩散之间的均方误差分别为7.9%和1.4%,以及实验和实验和MC校正模型。表示耦合效率高度依赖于光纤的数值孔径(NA)。然而,对于较低的散射,例如在软组织中,偶联的效率可以改变纤维NA预测的两倍和三倍。收集效率可用作选择基于光纤的生物医学应用的实用指南。

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