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An Interactive 3D Visualization Tool for Large Scale Data Sets for Quantitative Atom Probe Tomography

机译:交互式3D可视化工具,用于定量原子探针层析成像的大规模数据集

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Several visualization schemes have been developed for imaging materials at the atomic level through atom probe tomography. The main shortcoming of these tools is their inability to parallel process data using multi-core computing units to tackle the problem of larger data sets. This critically handicaps the ability to make a quantitative interpretation of spatial correlations in chemical composition, since a significant amount of the data is missed during subsequent analysis. In addition, since these visualization tools are not open-source software there is always a problem with developing a common language for the interpretation of data. In this contribution we present results of our work on using an open-source advanced interactive visualization software tool, which overcomes the difficulty of visualizing larger data sets by supporting parallel rendering on a graphical user interface or script user interface and permits quantitative analysis of atom probe tomography data in real time. This advancement allows materials scientists a codesign approach to making, measuring and modeling new and nanostructured materials by providing a direct feedback to the fabrication and designing of samples in real time.
机译:已经开发了几种可视化方案,用于通过原子探针层析成像在原子水平上对材料进行成像。这些工具的主要缺点是它们无法使用多核计算单元来并行处理数据来解决较大数据集的问题。这严重限制了对化学成分中的空间相关性进行定量解释的能力,因为在后续分析期间会遗漏大量数据。另外,由于这些可视化工具不是开源软件,因此开发用于解释数据的通用语言始终存在问题。在此贡献中,我们介绍了使用开放源代码高级交互式可视化软件工具的工作结果,该工具通过在图形用户界面或脚本用户界面上支持并行渲染而克服了可视化较大数据集的困难,并允许对原子探针进行定量分析实时断层扫描数据。这一进步使材料科学家可以通过代码反馈方法实时,实时地对样品的制造和设计进行反馈,从而对新材料和纳米结构材料进行制造,测量和建模。

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