Gough Michael Paul
Department of Engineering and Design, University of Sussex, Brighton BN1 9QT, UK.
Entropy (Basel). 2022 Mar 9;24(3):385. doi: 10.3390/e24030385.
We consider the role information energy can play as a source of dark energy. Firstly, we note that if stars and structure had not formed in the universe, elemental bits of information describing the attributes of particles would have exhibited properties similar to the cosmological constant. The Landauer equivalent energy of such elemental bits would be defined in form and value identical to the characteristic energy of the cosmological constant. However, with the formation of stars and structure, stellar heated gas and dust now provide the dominant contribution to information energy with the characteristics of a dynamic, transitional, dark energy. At low redshift, z < ~1.35, this dark energy emulates the cosmological constant with a near-constant energy density, w = −1.03 ± 0.05, and an energy total similar to the mc2 of the universe’s ∼1053 kg of baryons. At earlier times, z > ~1.35, information energy was phantom, differing from the cosmological constant, Λ, with a CPL parameter difference of ∆wo = −0.03 ± 0.05 and ∆wa = −0.79 ± 0.08, values sufficient to account for the H0 tension. Information dark energy agrees with most phenomena as well as Λ, while exhibiting characteristics that resolve many tensions and problems of ΛCDM: the cosmological constant problem; the cosmological coincidence problem; the H0 tension, and the σ8 tension. As this proposed dark energy source is not usually considered, we identify the expected signature in H(a) that will enable the role of information dark energy to be falsified by experimental observation.
我们考虑信息能量作为暗能量来源所能发挥的作用。首先,我们注意到,如果宇宙中恒星和结构没有形成,描述粒子属性的基本信息位将表现出与宇宙学常数相似的性质。这种基本信息位的兰道尔等效能量在形式和数值上的定义将与宇宙学常数的特征能量相同。然而,随着恒星和结构的形成,恒星加热的气体和尘埃现在对信息能量提供了主要贡献,具有动态、过渡性暗能量的特征。在低红移,z < ~1.35时,这种暗能量以近乎恒定的能量密度模拟宇宙学常数,w = −1.03 ± 0.05,并且总能量与宇宙中约1053千克重子的mc2相似。在更早的时期,z > ~1.35时,信息能量是幻像的,与宇宙学常数Λ不同,其CPL参数差异为∆wo = −0.03 ± 0.05和∆wa = −0.79 ± 0.08,这些值足以解释哈勃常数张力。信息暗能量与大多数现象以及Λ相符,同时展现出能够解决ΛCDM的许多张力和问题的特征:宇宙学常数问题;宇宙学巧合问题;哈勃常数张力以及σ8张力。由于这种提出的暗能量来源通常未被考虑,我们确定了在哈勃参数(a)中的预期特征,这将使信息暗能量的作用能够通过实验观测被证伪。