Modification of Gravitational Field Equation due to Invariance of Light Speed and New System of Universe Evolution

IF 1.6 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
J. Yang
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引用次数: 0

Abstract

We make a systematic examination of the basic theory of general relativity and reemphasize the meaning of coordinates. Firstly, we prove that Einsteinʼs gravitational field equation has the light speed invariant solution and black holes are not an inevitable prediction of general relativity. Second, we show that the coupling coefficient of the gravitational field equation is not unique and can be modified as 4 π G to replace the previous − 8 π G , distinguish gravitational mass from the inertial mass, and prove that dark matter and dark energy are not certain existence and the expansion and contraction of the universe are proven cyclic, and a new distance-redshift relation which is more practical is derived. After that, we show that galaxies and celestial bodies are formed by gradual growth rather than by the accumulation of existing matter and prove that new matter is generating gradually in the interior of celestial bodies. For example, the radius of the Earth increases by 0.5 mm every year, and its mass increases by 1.2 trillion tons. A more reasonable derivation of the precession of planetary orbits is given, and the evolution equation of planetary orbits in the expanding space-time is also given. In a word, an alive universe unfolds in front of readers and the current cosmological difficulties are given new interpretations.
光速不变性对引力场方程的修正与宇宙演化新体系
我们系统地考察了广义相对论的基本理论,并重新强调了坐标的意义。首先,我们证明了爱因斯坦引力场方程具有光速不变解,黑洞不是广义相对论的必然预测。其次,我们证明了引力场方程的耦合系数不是唯一的,可以修改为4πG来代替之前的−8πG,区分引力质量和惯性质量,并证明暗物质和暗能量不一定存在,宇宙的膨胀和收缩是循环的,并导出了一个更实用的新的距离红移关系式。之后,我们证明星系和天体是通过逐渐增长而不是通过现有物质的积累形成的,并证明新物质正在天体内部逐渐产生。例如,地球的半径增加0.5 毫米,其质量每年增加1.2万亿吨。给出了行星轨道进动的一个更合理的推导,并给出了在膨胀时空中行星轨道的演化方程。总之,一个鲜活的宇宙展现在读者面前,对当前的宇宙学难题给出了新的解释。
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来源期刊
Advances in Astronomy
Advances in Astronomy ASTRONOMY & ASTROPHYSICS-
CiteScore
2.70
自引率
7.10%
发文量
10
审稿时长
22 weeks
期刊介绍: Advances in Astronomy publishes articles in all areas of astronomy, astrophysics, and cosmology. The journal accepts both observational and theoretical investigations into celestial objects and the wider universe, as well as the reports of new methods and instrumentation for their study.
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