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Explanatory and illustrative visualization of special and general relativity

机译:狭义相对论和广义相对论的解释性和说明性可视化

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This paper describes methods for explanatory and illustrative visualizations used to communicate aspects of Einstein's theories of special and general relativity, their geometric structure, and of the related fields of cosmology and astrophysics. Our illustrations target a general audience of laypersons interested in relativity. We discuss visualization strategies, motivated by physics education and the didactics of mathematics, and describe what kind of visualization methods have proven to be useful for different types of media, such as still images in popular science magazines, film contributions to TV shows, oral presentations, or interactive museum installations. Our primary approach is to adopt an egocentric point of view: the recipients of a visualization participate in a visually enriched thought experiment that allows them to experience or explore a relativistic scenario. In addition, we often combine egocentric visualizations with more abstract illustrations based on an outside view in order to provide several presentations of the same phenomenon. Although our visualization tools often build upon existing methods and implementations, the underlying techniques have been improved by several novel technical contributions like image-based special relativistic rendering on GPUs, special relativistic 4D ray tracing for accelerating scene objects, an extension of general relativistic ray tracing to manifolds described by multiple charts, GPU-based interactive visualization of gravitational light deflection, as well as planetary terrain rendering. The usefulness and effectiveness of our visualizations are demonstrated by reporting on experiences with, and feedback from, recipients of visualizations and collaborators.
机译:本文介绍用于解释性和说明性可视化的方法,这些方法用于传达爱因斯坦的狭义相对论和广义相对论,它们的几何结构以及宇宙学和天体物理学的相关领域。我们的插图针对对相对论感兴趣的非专业人士。我们讨论了受物理教育和数学教学启发的可视化策略,并描述了哪种可视化方法已被证明对不同类型的媒体有用,例如流行科学杂志中的静态图像,电影对电视节目的介绍,口头演示,或互动式博物馆装置。我们的主要方法是采用以自我为中心的观点:可视化的接受者参加了视觉丰富的思想实验,该实验使他们能够体验或探索相对论场景。此外,我们经常基于外部视图将以自我为中心的可视化与更抽象的插图相结合,以提供同一现象的多种呈现方式。尽管我们的可视化工具通常以现有的方法和实现为基础,但一些新的技术贡献已改进了基础技术,例如在GPU上基于图像的特殊相对论渲染,用于加速场景对象的特殊相对论4D射线跟踪,常规相对论射线跟踪的扩展到由多个图表描述的流形,基于GPU的重力光偏转以及行星地形渲染的交互式可视化。通过报告可视化和协作者的经验并提供反馈,可以证明我们可视化的有用性和有效性。

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