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与中心照明区域检测几何结构相关的漫射光子发射。II. 时域模型的方法。

Diffuse photon remission associated with the center-illuminated-area-detection geometry. II. Approach to the time-domain model.

作者信息

Sun Tengfei, Piao Daqing

出版信息

Appl Opt. 2023 May 20;62(15):3880-3891. doi: 10.1364/AO.478322.

DOI:10.1364/AO.478322
PMID:37706697
Abstract

This part proposes a model of time-dependent diffuse photon remission for the center-illuminated-area-detection (CIAD) geometry, by virtue of area integration of the radially resolved time-dependent diffuse photon remission formulated with the master-slave dual-source scheme demonstrated in Part I for steady-state measurements. The time-domain model is assessed against Monte Carlo (MC) simulations limiting to only the Heyney-Greenstein scattering phase function for CIAD of physical scales and medium properties relevant to single-fiber reflectance (SfR) and over a 2 ns duration, in compliance with the timespan of the only experimental report of SfR demonstrated with a 50 µm gradient index fiber. The time-domain model-MC assessments are carried out for an absorption coefficient ranging three orders of magnitude over [0.001,0.01,0.1,1] at a fixed scattering, and a reduced scattering coefficient ranging three orders of magnitude over [0.01,0.1,1,10] at a fixed absorption, among others. Photons of shorter and longer propagation times, relative to the diameter of the area of collection, respond differently to the scattering and absorption changes. Limited comparisons of MC between CIAD and a top-hat geometry as the idealization of SfR reveal that the time-domain photon remissions of the two geometries differ appreciably in only the early arriving photons.

摘要

本部分借助于第一部分中用于稳态测量的主从双源方案所制定的径向分辨随时间变化的漫射光子发射率的面积积分,提出了一种用于中心照明区域检测(CIAD)几何结构的随时间变化的漫射光子发射率模型。针对蒙特卡罗(MC)模拟对该时域模型进行了评估,该模拟仅限于与单光纤反射率(SfR)相关的物理尺度和介质特性的CIAD的Heyney-Greenstein散射相函数,并且持续时间为2 ns,这与唯一一篇用50 µm渐变折射率光纤展示SfR的实验报告的时间跨度一致。在固定散射条件下,针对吸收系数在[0.001,0.01,0.1,1]范围内变化三个数量级,以及在固定吸收条件下,针对约化散射系数在[0.01,0.1,1,10]范围内变化三个数量级等情况,进行了时域模型与MC的评估。相对于收集区域的直径,传播时间较短和较长的光子对散射和吸收变化的响应不同。CIAD与作为SfR理想化的顶帽几何结构之间的MC有限比较表明,两种几何结构的时域光子发射率仅在早期到达的光子中存在明显差异。

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