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Analytical and Monte Carlo comparisons on the optical transport mechanisms of powder phosphors

机译:粉末荧光粉光学传输机理的分析和蒙特卡洛比较

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摘要

In indirect medical imaging systems, the optical transfer properties of powder phosphor materials are affected by the intrinsic mechanisms of light extinction. Light extinction (absorption and scattering) can be described either through theoretical models or with Monte Carlo simulation techniques. The purpose of the present paper is to compare both methodologies and assess the association of their optical parameters by examining either the structural (e.g., particle size) or the optical (e.g., light wavelength) intrinsic properties of the phosphor.Comparisons were carried out for the widely used host Gd2O2S for granular phosphors. The parameters considered in Monte Carlo simulation were: (i) a phosphor layer composed of grains with diameter 4-12 mu m, (ii) the light wavelength (420 nm, 545 nm and 610 nm), (iii) the refractive index of the phosphor (real part: 2.3, imaginary part: 10(-6) and 10(-5)), (iv) the packing density 50%. The results were compared with the Swank analytical model, based in Boltzman diffusion equation, by considering three cases for optical coefficients determination with the help of which the Luminescence Efficiency (LE) and the Modulation Transfer Function (MTF) of the phosphor could be predicted.It was found that Swank's model seems more appropriate for estimating the MTF values, presenting a deviation less than 5% in all the frequency range. for: wavelength 420 nm, considering (i) grain size 4 mu m and thicknesses above 250 mu m, (ii) grain size 12 mu m and thicknesses above 300 mu m, (b) wavelength 545 nm, grain size 8 pm and thicknesses above 160 mu m, and (c) wavelength 610 nm, considering (i) grain size 4 mu m and thicknesses above 200 mu m, (ii) grain size 8 mu m and thicknesses above 120 mu m and (iii) grain size 12 mu m and thicknesses above 80 mu m.
机译:在间接医学成像系统中,粉末荧光粉材料的光学传递特性受消光的内在机理影响。消光(吸收和散射)可以通过理论模型或蒙特卡洛模拟技术来描述。本文的目的是比较两种方法并通过检查磷光体的结构(例如粒度)或光学(例如光波长)本征特性来评估其光学参数的关联。广泛用于颗粒磷光体的主体Gd2O2S。蒙特卡洛模拟中考虑的参数为:(i)由直径为4-12微米的晶粒组成的磷光体层,(ii)光波长(420 nm,545 nm和610 nm),(iii)折射率荧光粉(实部:2.3,虚部:10(-6)和10(-5)),(iv)堆积密度为50%。将结果与基于Boltzman扩散方程的Swank分析模型进行了比较,考虑了三种确定光学系数的情况,借助这些情况可以预测磷光体的发光效率(LE)和调制传递函数(MTF)。发现斯旺克的模型似乎更适合估计MTF值,在所有频率范围内的偏差均小于5%。对于:波长420 nm,考虑(i)晶粒度4微米,厚度大于250微米,(ii)晶粒度12微米,厚度大于300微米,(b)波长545 nm,晶粒度8 pm和厚度(i)晶粒度4微米且厚度大于200微米,(ii)晶粒度8微米且厚度大于120微米,以及(iii)晶粒度12大于160微米,以及(c)波长610纳米厚度大于80微米。

著录项

  • 来源
    《Optical Materials》 |2019年第2期|396-405|共10页
  • 作者

    Kalyvas N.; Liaparinos P.;

  • 作者单位

    Univ West Attika, Dept Biomed Engn, Campus 1, Athens 12243, Greece;

    Univ West Attika, Dept Biomed Engn, Campus 1, Athens 12243, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Optical diffusion; Phosphor materials; X-ray detectors;

    机译:光学扩散荧光粉材料X射线探测器;

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