关于克鲁斯卡尔-塞克尔坐标的广义化:赖斯纳-诺德斯特伦时空的全局保角制图

IF 3.6 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Fawzi Aly and Dejan Stojkovic
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引用次数: 0

摘要

施瓦兹柴尔德时空的 Kruskal-Szekeres 坐标构造可以简单地解释为在事件视界处将 t 线挤压成一个点。从这个角度出发,我们将克鲁斯卡尔制图扩展到具有两个视界的时空,特别是赖斯纳-诺德斯特伦流形。 我们开发了一种新方法,通过在新的空坐标中铸造度量来构建类似克鲁斯卡尔的坐标,并找到了两种代数上截然不同的制图方法,在本文中被称为类:I型和II型。我们通过制作两个紧凑、保形和全局坐标系,分别标注为和,作为每类坐标系的示例,并绘制相应的彭罗斯图,从教学角度说明了我们的方法。在这两个坐标系中,度量可微分性都可以直接提升到。最后,对于这两类图表,共形度量因子都可以用 t 和 r 函数明确地写出。我们还认为,索尔塔尼(2023 arXiv:2307.11026)最近报告的图表可以看作是第二类分类的另一个例子,类似于......。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the generalization of the Kruskal–Szekeres coordinates: a global conformal charting of the Reissner–Nordström spacetime
The Kruskal–Szekeres coordinate construction for the Schwarzschild spacetime could be interpreted simply as a squeezing of the t-line into a single point, at the event horizon . Starting from this perspective, we extend the Kruskal charting to spacetimes with two horizons, in particular the Reissner–Nordström manifold, . We develop a new method to construct Kruskal-like coordinates through casting the metric in new null coordinates, and find two algebraically distinct ways to chart , referred to as classes: type-I and type-II within this work. We pedagogically illustrate our method by crafting two compact, conformal, and global coordinate systems labeled and as an example for each class respectively, and plot the corresponding Penrose diagrams. In both coordinates, the metric differentiability can be promoted to in a straightforward way. Finally, the conformal metric factor can be written explicitly in terms of the t and r functions for both types of charts. We also argued that the chart recently reported in Soltani (2023 arXiv:2307.11026) could be viewed as another example for the type-II classification, similar to .
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来源期刊
Classical and Quantum Gravity
Classical and Quantum Gravity 物理-天文与天体物理
CiteScore
7.00
自引率
8.60%
发文量
301
审稿时长
2-4 weeks
期刊介绍: Classical and Quantum Gravity is an established journal for physicists, mathematicians and cosmologists in the fields of gravitation and the theory of spacetime. The journal is now the acknowledged world leader in classical relativity and all areas of quantum gravity.
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