论文标题
考虑Friedmann方程中的光线相互作用
Considering light-matter interactions in the Friedmann equations
论文作者
论文摘要
最近的观察结果表明,由于环境宇宙尘埃吸收光,宇宙不是透明的,而是部分不透明。这意味着必须为不透明的宇宙修改对透明宇宙有效的弗里德曼方程。本文研究了不透明度随红移陡峭上升时的一种情况。在这种情况下,光 - 物质相互作用变得重要,因为宇宙不透明性会产生抵抗引力的辐射压力。所提出的理论模型假定宇宙根据标准FLRW度量的扩展,但根据两种类型的力量,具有比例因子$ a(t)$:重力和辐射压力。修改后的弗里德曼方程预测宇宙在有限范围的尺度因子范围内的循环膨胀/收缩演变,而没有初始奇异性。该模型避免了暗能量,并消除了标准宇宙学模型的其他一些紧张局势。该论文表明,考虑宇宙动力学中的光结合相互作用至关重要,可能导致与标准$λ$ CDM模型基本不同的新宇宙学模型。这强调了高红移时宇宙不透明和宇宙尘埃的新观察和研究的必要性,以对宇宙的进化进行更现实的建模。
Recent observations indicate that the Universe is not transparent but partially opaque due to absorption of light by ambient cosmic dust. This implies that the Friedmann equations valid for the transparent universe must be modified for the opaque universe. The paper studies a scenario when the opacity steeply rises with redshift. In this case, the light-matter interactions become important, because cosmic opacity produces radiation pressure that counterbalances gravitational forces. The presented theoretical model assumes the Universe expanding according to the standard FLRW metric but with the scale factor $a(t)$ depending on both types of forces: gravity as well as radiation pressure. The modified Friedmann equations predicts a cyclic expansion/contraction evolution of the Universe within a limited range of scale factors with no initial singularity. The model avoids dark energy and removes some other tensions of the standard cosmological model. The paper demonstrates that considering light-matter interactions in cosmic dynamics is crucial and can lead to new cosmological models essentially different from the standard $Λ$CDM model. This emphasizes necessity of new observations and studies of cosmic opacity and cosmic dust at high redshifts for more realistic modelling of the evolution of the Universe.