FeynGame 3.0

IF 3.4 2区 物理与天体物理 Q1 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Lars Bündgen, Robert V. Harlander, Sven Yannick Klein, Magnus C. Schaaf
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引用次数: 0

Abstract

A major update of the program FeynGame is introduced. One of its main new functionalities is to visualize Feynman graphs generated by qgraf. The qgraf output can be either pasted into the FeynGame canvas for individual graphs, or the whole qgraf output file can be processed. In addition, a number of new features and improvements have been implemented into FeynGame 3.0 in order to further facilitate the efficient drawing of Feynman diagrams in publication quality. FeynGame is freely available
  • as jar or MacOS app file from
    https://web.physik.rwth-aachen.de/user/harlander/software/feyngame
  • as source code from https://gitlab.com/feyngame/FeynGame
FeynGame 3.0
介绍了FeynGame程序的主要更新。它的主要新功能之一是可视化由qgraf生成的费曼图。qgraf输出既可以粘贴到FeynGame画布中用于单独的图形,也可以处理整个qgraf输出文件。此外,FeynGame 3.0还实现了许多新功能和改进,以进一步促进在出版质量方面有效绘制费曼图。FeynGame是免费提供的-作为jar或MacOS应用程序文件从https://web.physik.rwth-aachen.de/user/harlander/software/ FeynGame•作为源代码从https://gitlab.com/feyngame/FeynGame
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Computer Physics Communications
Computer Physics Communications 物理-计算机:跨学科应用
CiteScore
12.10
自引率
3.20%
发文量
287
审稿时长
5.3 months
期刊介绍: The focus of CPC is on contemporary computational methods and techniques and their implementation, the effectiveness of which will normally be evidenced by the author(s) within the context of a substantive problem in physics. Within this setting CPC publishes two types of paper. Computer Programs in Physics (CPiP) These papers describe significant computer programs to be archived in the CPC Program Library which is held in the Mendeley Data repository. The submitted software must be covered by an approved open source licence. Papers and associated computer programs that address a problem of contemporary interest in physics that cannot be solved by current software are particularly encouraged. Computational Physics Papers (CP) These are research papers in, but are not limited to, the following themes across computational physics and related disciplines. mathematical and numerical methods and algorithms; computational models including those associated with the design, control and analysis of experiments; and algebraic computation. Each will normally include software implementation and performance details. The software implementation should, ideally, be available via GitHub, Zenodo or an institutional repository.In addition, research papers on the impact of advanced computer architecture and special purpose computers on computing in the physical sciences and software topics related to, and of importance in, the physical sciences may be considered.
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