优化\(f(R,T)\)重力下中子星的平衡构型

IF 1.8 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
J. T. Quartuccio, P. H. R. S. Moraes, G. N. Zeminiani, M. M. Lapola
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引用次数: 0

摘要

我们使用特定的\(f(R,T)\)函数形式构建中子星的平衡构型,该函数形式最近通过应用于哈勃参数测量的高斯过程导出。通过构造,这种函数形式作为宇宙加速的另一种解释,绕过了宇宙常数问题。在这里,我们的目的是检验它在恒星制度中的适用性。在这样做的过程中,我们试图通过在高度不同的制度中应用给定重力理论的相同功能形式来为修改的重力文献做出贡献。我们的结果表明,在这个理论中可以得到中子星的平衡构型,其能量密度和最大质量略高于广义相对论的预测。此外,我们证明了\(f(R,T)\)函数形式中的一些参数的值必须与宇宙学构型中获得的值不同,这表明这些参数可能具有尺度依赖性。我们建议进一步的研究将这种功能形式应用于不同的制度,以更彻底地评估这种可能的依赖性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The equilibrium configurations of neutron stars in the optimized \(f(R,T)\) gravity

We construct equilibrium configurations for neutron stars using a specific \(f(R,T)\) functional form, recently derived through gaussian process applied to measurements of the Hubble parameter. By construction, this functional form serves as an alternative explanation for cosmic acceleration, circumventing the cosmological constant problem. Here, we aim to examine its applicability within the stellar regime. In doing so, we seek to contribute to the modified gravity literature by applying the same functional form of a given gravity theory across highly distinct regimes. Our results demonstrate that equilibrium configurations of neutron stars can be obtained within this theory, with the energy density and maximum mass slightly exceeding those predicted by General Relativity. Additionally, we show that the value of some parameters in the \(f(R,T)\) functional form must differ from those obtained in cosmological configurations, suggesting a potential scale-dependence for these parameters. We propose that further studies apply this functional form across different regimes to more thoroughly assess this possible dependence.

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来源期刊
Astrophysics and Space Science
Astrophysics and Space Science 地学天文-天文与天体物理
CiteScore
3.40
自引率
5.30%
发文量
106
审稿时长
2-4 weeks
期刊介绍: Astrophysics and Space Science publishes original contributions and invited reviews covering the entire range of astronomy, astrophysics, astrophysical cosmology, planetary and space science and the astrophysical aspects of astrobiology. This includes both observational and theoretical research, the techniques of astronomical instrumentation and data analysis and astronomical space instrumentation. We particularly welcome papers in the general fields of high-energy astrophysics, astrophysical and astrochemical studies of the interstellar medium including star formation, planetary astrophysics, the formation and evolution of galaxies and the evolution of large scale structure in the Universe. Papers in mathematical physics or in general relativity which do not establish clear astrophysical applications will no longer be considered. The journal also publishes topically selected special issues in research fields of particular scientific interest. These consist of both invited reviews and original research papers. Conference proceedings will not be considered. All papers published in the journal are subject to thorough and strict peer-reviewing. Astrophysics and Space Science features short publication times after acceptance and colour printing free of charge.
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