OGRePy:面向对象的 Python 广义相对论软件包

Barak Shoshany
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引用次数: 0

摘要

我们介绍 OGRePy,它是广受欢迎的 Mathematica 张量计算软件包 OGRe(面向对象广义相对论)的官方 Python 移植版。OGRe 是一款功能强大、用户友好的工具,适用于数学和物理学中的高级张量计算,尤其适用于广义相对论。Python 移植版使用了与原始软件包相同的强大和面向性能的算法,并保留了其核心设计原则。然而,与最初的 Mathematica 实现相比,Python 实现的真正面向对象的界面更加直观和灵活。它使用 SymPy 进行符号计算,使用 Jupyter 作为笔记本界面。OGRePy 允许使用加法、标量乘法、跟踪、收缩、偏导数、协变量导数和指数置换的任意组合计算任意张量公式。张量成分在不同索引配置和/或坐标系之间的变换可根据需要在幕后无缝执行,消除了用户因组合不兼容的表示而产生的错误,并保证了结果的一致性。此外,软件包还提供了在多种表示法中轻松计算各种曲率张量和大地方程的功能。本文详细介绍了该软件包的主要功能,包括在广义相对论研究中使用该软件包的许多实例。
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OGRePy: An Object-Oriented General Relativity Package for Python
We present OGRePy, the official Python port of the popular Mathematica tensor calculus package OGRe (Object-Oriented General Relativity) - a powerful, yet user-friendly, tool for advanced tensor calculations in mathematics and physics, especially suitable for general relativity. The Python port uses the same robust and performance-oriented algorithms as the original package, and retains its core design principles. However, its truly object-oriented interface, enabled by Python, is more intuitive and flexible than the original Mathematica implementation. It utilizes SymPy for symbolic computations and Jupyter as a notebook interface. OGRePy allows calculating arbitrary tensor formulas using any combination of addition, multiplication by scalar, trace, contraction, partial derivative, covariant derivative, and permutation of indices. Transformations of the tensor components between different index configurations and/or coordinate systems are performed seamlessly behind the scenes as needed, eliminating user error due to combining incompatible representations, and guaranteeing consistent results. In addition, the package provides facilities for easily calculating various curvature tensors and geodesic equations in multiple representations. This paper presents the main features of the package in great detail, including many examples of its use in the context of general relativity research.
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