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Using differential ray tracing in stray light analysis

机译:在散射光分析中使用差分射线跟踪

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This paper describes differential ray tracing and shows how it can be used to great advantage in stray light analysis. Tracing a differential ray from a source to a target yields a set of derivatives that contain a complete first-order description of a ray bundle surrounding the ray being traced. These derivatives provide the information needed for aiming rays and transforming a sample area on a target surface into a solid angle seen by the source. By using targeted differential rays, we eliminate the need for defining importance curves for generating scattered rays. Convergence is accelerated, and the resulting irradiance distributions end up smoother than what one usually obtains with the traditional Monte Carlo approach. This paper also shows how the derivatives from a single ray can be used to define and propagate Gaussian beams without the need for secondary rays.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:本文介绍了差分射线跟踪,并说明了如何在杂散光分析中将其用于更大的优势。从源到目标跟踪微分射线会产生一组导数,这些导数包含围绕被跟踪射线的射线束的完整一阶描述。这些导数提供了将光线对准目标表面上的样本区域并将其转换为源可见的立体角所需的信息。通过使用目标微分射线,我们无需定义重要性曲线以生成散射射线。收敛加快,并且最终的辐照度分布比传统的蒙特卡洛方法通常更平滑。本文还展示了如何利用单束光线的导数来定义和传播高斯光束,而无需产生第二束光线。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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