宇宙微波背景解释中的遗留问题

H. Fahr, Michael Sokaliwska
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引用次数: 12

摘要

通过三个独立的提示,将证明目前对CMB现象的理论理解仍然严重缺乏。正如我们所表明的,有一点是,在重组时代的阶段,人们不能假设完全的热力学平衡条件,但必须面对轻子和重子的速度分布偏离麦克斯韦-玻尔兹曼分布和光子自动相关偏离普朗克定律。另一点是,根据对宇宙膨胀中CMB演化的传统理解,随着回顾时间的增加,我们必须面对CMB温度的上升。然而,我们在这里表明,预期的CMB温度升高将阻止星系中恒星的形成,这些星系的红移高于宇宙学上最相关的超新星已经被观测到的地方。我们目前研究的第三点与恒定真空能量密度的假设有关,这是目前cdm宇宙学所要求的。我们在这里的研究得出的结论是,宇宙真空能量密度的尺度与宇宙膨胀尺度的平方反比。因此,我们得出的结论是,对目前高质量的CMB数据的解释仍然需要仔细考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remaining Problems in Interpretation of the Cosmic Microwave Background
By three independent hints it will be demonstrated that still at present there is a substantial lack of theoretical understanding of the CMB phenomenon. One point, as we show, is that at the phase of the recombination era one cannot assume complete thermodynamic equilibrium conditions but has to face both deviations in the velocity distributions of leptons and baryons from a Maxwell-Boltzmann distribution and automatically correlated deviations of photons from a Planck law. Another point is that at the conventional understanding of the CMB evolution in an expanding universe one has to face growing CMB temperatures with growing look-back times. We show, however, here that the expected CMB temperature increases would be prohibitive to star formation in galaxies at redshifts higher than where nevertheless the cosmologically most relevant supernovae have been observed. The third point in our present study has to do with the assumption of a constant vacuum energy density which is required by the present CDM-cosmology. Our studies here rather lead to the conclusion that cosmic vacuum energy density scales with the inverse square of the cosmic expansion scale . Thus we come to the conclusion that with the interpretation of the present-day high quality CMB data still needs to be considered carefully.
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