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弯曲几何中的引力塌缩的数学建模与分析。

Mathematical modelling and analysis of gravitational collapse in curved geometry.

机构信息

School of Mathematics and Statistics, Beijing Institute of Technology, Beijing 100081, China; Department of Mathematics and Statistics, Hazara University Mansehra, KPK, Pakistan.

School of Mathematics and Statistics, Beijing Institute of Technology, Beijing 100081, China.

出版信息

Comput Methods Programs Biomed. 2020 Feb;184:105283. doi: 10.1016/j.cmpb.2019.105283. Epub 2019 Dec 23.

Abstract

BACKGROUND AND OBJECTIVES

In the visible universe, it is believed that mass and energy are interchangeable. However, the physical and chemical processes in the hidden world put the scientist into the thought of matter and energy contents that are responsible for these phenomena. These are regarded as dark matter and dark energy. In this article, we study the effects of spacetime curvature on the gravitational collapse of dark energy in modified gravity, considering the collapse of the spherically symmetric star, which is composed of perfect and homogeneous fluid. We studied the collapse for closed, flat and hyperbolic geometry.

METHOD

As a result of mathematical modeling, we achieved highly non-linear differential equations. For the solution, we needed the assumption of physical significance. Specifically, we have taken the dark energy collapse. Then we achieved a simple system and solved for the analytic solutions of the field equations.

RESULTS

It is shown that the possible collapse is visibly influenced by spatial curvature. The collapse time is advanced for closed spacetime, delayed for the hypersurface, and the flat space behaves intermediately. We have taken here the equation of state in linear form to discuss the exhibition of fluid profile and a specific necessary criterion for the occurrence of spacetime singularity.

CONCLUSION

In this paper, we study the mathematical model of gravitational collapse in modified gravity, which derives the field equations using the principle of least action. The significant outcomes are the influences of the spatial curvature on the collapsing process and the time of formation of spacetime singularity. The matching of boundary and the fundamental continuity of the 1-form and 2-form are discussed.

摘要

背景与目的

在可见宇宙中,人们相信质量和能量是可以相互转换的。然而,隐藏世界中的物理和化学过程让科学家们开始思考这些现象背后的物质和能量含量。这些被认为是暗物质和暗能量。在本文中,我们研究了时空曲率对修正引力中暗能量引力坍缩的影响,考虑了由完美均匀流体组成的球对称恒星的坍缩。我们研究了封闭、平坦和双曲几何下的坍缩。

方法

通过数学建模,我们得到了高度非线性的微分方程。为了解决这个问题,我们需要做出具有物理意义的假设。具体来说,我们假设了暗能量的坍缩。然后,我们得到了一个简单的系统,并求解了场方程的解析解。

结果

结果表明,空间曲率对可能的坍缩有明显的影响。封闭时空中的坍缩时间提前,双曲时空中的坍缩时间延迟,而平坦时空中的坍缩时间居中。我们在这里采用了线性形式的状态方程来讨论流体分布的表现以及时空奇点发生的特定必要条件。

结论

本文研究了修正引力中的引力坍缩数学模型,该模型使用最小作用量原理推导出了场方程。重要的结果是空间曲率对坍缩过程和时空奇点形成时间的影响。我们还讨论了边界匹配和 1-形式和 2-形式的基本连续性。

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