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LIGHTAWE-case studies of LIGHT spreAd in poWder materials: a montE carlo simulation tool for research and educational purposes

机译:LIGHTAWE-粉末材料中LIGHT spreAd的案例研究:用于研究和教育目的的montE carlo模拟工具

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摘要

In this paper, the LIGHTAWE Monte Carlo simulation tool is introduced and presented. LIGHTAWE has been developed to provide case studies of light spread in powder materials for both research and educational purposes. The algorithms of LIGHTAWE are based on Mie scattering theory and Henyey-Greenstein distribution. LIGHTAWE simulates the light ray interactions and encounters the overall optical diffusion, transmission and reflection (amount and distribution) of granular structured layers. Two main options are included: (a) fixed light point sources within the layer (concerning optical diffusion for any structure of spherical particles embedded within a surrounding medium) and (b) light distribution of 62 specific powder phosphor materials under X-ray penetration. The above options make LIGHTAWE an available and useful tool for a variety of scientific fields and applications. The capability to alter a set of parameters and perform a countless number of probable and comparable simulations, can insight and further enlighten the research of light spread performance. Based on the Monte Carlo methodology, LIGHTAWE can overcome cumbersome analytical modelling, and can take advantage of computer science to perform experiments that would be otherwise impossible (i.e., the capability to design, evaluate and optimize virtual experimental set-ups of zero cost or with low risk actions) enhancing curiosity-driven future research. The manuscript demonstrates the physics, the treatment and the capabilities of LIGHTAWE as well as the corresponding advantages, disadvantages, benefits and limitations. Finally, a simulation example is presented in the Appendix section.
机译:本文介绍并介绍了LIGHTAWE Monte Carlo仿真工具。开发LIGHTAWE的目的是为研究和教育目的提供粉末材料中光传播的案例研究。 LIGHTAWE的算法基于Mie散射理论和Henyey-Greenstein分布。 LIGHTAWE模拟光线的相互作用,并遇到粒状结构层的整体光学扩散,透射和反射(量和分布)。包括两个主要选项:(a)层内的固定光点源(关于嵌入周围介质中的球形颗粒的任何结构的光扩散),以及(b)62种特定粉末磷光体材料在X射线穿透下的光分布。以上选项使LIGHTAWE成为适用于各种科学领域和应用程序的可用工具。更改一组参数并执行无数可能和可比较的模拟的能力可以洞察并进一步启发光扩散性能的研究。基于蒙特卡洛方法,LIGHTAWE可以克服繁琐的分析建模,并可以利用计算机科学来执行原本不可能的实验(即设计,评估和优化零成本虚拟实验装置或使用虚拟环境进行实验的能力)。低风险行动),增强好奇心驱动的未来研究。该手稿展示了LIGHTAWE的物理特性,处理方式和功能,以及相应的优点,缺点,好处和局限性。最后,附录部分提供了一个仿真示例。

著录项

  • 来源
    《Applied physics》 |2019年第8期|151.1-151.11|共11页
  • 作者

    Liaparinos Panagiotis;

  • 作者单位

    Univ West Attica, Dept Biomed Engn, Radiat Phys Mat Technol & Biomed Imaging Lab, Athens, Greece;

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

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