Cosmological Consequence of Varying Speed of Light and Gravitational Constant

G. W. Joseph, Lucky Peter Kenda, Maxwell Obia Kanu
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Abstract

The speed of light is taken to be a constant in a vacuum. This forms the basic tool for the principle of General Covariance, which asserts that all laws of Physics should take the same form in all frames of reference. Without putting inflation into consideration, the theory of varying speed of light (VSL) would solve basic problems of cosmology in the early universe. Furthermore, the Gravitational constant G that occurred in the Friedmann Equations may not have been real constants in the early universe but have some variation with the universe scale factor. Cosmological models with varying physical constants have been of interest in recent years with few works in the literature. A cosmological solution obtained by incorporating variable speed of light and gravitational constant gives a cosmic model which is free from the initial Big Bang singularity and horizon problem. It is also observed here that the early universe was dominated by dark matter, however, as the scale factor increases, the dark energy become dominant.
光速和引力常数变化的宇宙学后果
在真空中,光速被认为是一个常数。这构成了广义协变原理的基本工具,该原理主张所有物理定律在所有参照系中都应采取相同的形式。在不考虑通货膨胀的情况下,光速变化(VSL)理论可以解决早期宇宙学的基本问题。此外,弗里德曼方程中的引力常数 G 在早期宇宙中可能并不是真正的常数,而是随着宇宙尺度因子的变化而变化。近年来,具有变化物理常数的宇宙学模型引起了人们的兴趣,但文献中的研究很少。通过加入可变光速和引力常数得到的宇宙学解法给出了一个宇宙模型,它摆脱了大爆炸初期的奇点和地平线问题。这里还观察到,早期宇宙由暗物质主导,然而,随着尺度因子的增加,暗能量成为主导。
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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