哥德尔-普朗克-哈勃-伯奇宇宙的实用模型

U. Seshavatharam, S. Lakshminarayana
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引用次数: 6

摘要

通过将“普朗克质量”视为一种特征性的大质量种子,并用不断增长的普朗克球取代大爆炸,可以开发出一个不断发展的量子宇宙学模型。关于增加对大尺度宇宙各向异性、优选方向、宇宙自旋的量子力学需求的支持,并通过考虑角速度的下降趋势,从普朗克尺度开始,我们开发了一种估计所有宇宙物理参数趋势的程序。从婴儿宇宙开始,在所有方向上,宇宙加速度都可以理解为膨胀速度的增加和总物质密度比的降低。我们认为,从普朗克尺度开始,1)暗物质可以被认为是一种负责星系形成的宇宙泡沫。2) 宇宙角速度随宇宙温度降低的平方而减小。3) 哈勃参数和角速度之比的增加对估计宇宙膨胀速度的增加和总物质密度比的降低起着至关重要的作用。4) 为了理解宇宙加速度,没有必要考虑暗能量。随着进一步的研究,可以用量子宇宙学的方法来回顾宇宙学核合成和暗物质合成以及质量产生机制。
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A Practical Model of Godel–Planck–Hubble–Birch Universe
By considering ‘Planck mass’ as a characteristic massive seed and by replacing big bang with a growing Planck ball, an evolving model of quantum cosmology can be developed. With reference to increasing support for large scale cosmic anisotropy, preferred directions, quantum mechanical demand of cosmic spin and by considering a decreasing trend of angular velocity, from the beginning of Planck scale, we have developed a procedure for estimating the trend of all cosmic physical parameters. From and about the baby universe, in all directions, cosmic acceleration can be understood with increasing expansion velocity and decreasing total matter density ratio. We would like suggest that, from the beginning of Planck scale, 1) Dark matter can be considered as a kind of cosmic foam responsible for formation of galaxies. 2) Cosmic angular velocity decreases with square of the decreasing cosmic temperature. 3) Increasing ratio of Hubble parameter to angular velocity plays a crucial role in estimating increasing cosmic expansion velocity and decreasing total matter density ratio. 4) There is no need to consider dark energy for understanding cosmic acceleration. With further study, cosmological nucleosynthesis and dark matter synthesis along with mass generation mechanism can be reviewed in a quantum cosmological approach.
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