Lymperis Andreas, Saridakis Emmanuel N
1Department of Physics, University of Patras, 26500 Patras, Greece.
2Department of Physics, National Technical University of Athens, Zografou Campus GR, 157 73 Athens, Greece.
Eur Phys J C Part Fields. 2018;78(12):993. doi: 10.1140/epjc/s10052-018-6480-y. Epub 2018 Dec 5.
We construct modified cosmological scenarios through the application of the first law of thermodynamics on the universe horizon, but using the generalized, nonextensive Tsallis entropy instead of the usual Bekenstein-Hawking one. We result to modified cosmological equations that possess the usual ones as a particular limit, but which in the general case contain extra terms that appear for the first time, that constitute an effective dark energy sector quantified by the nonextensive parameter . When the matter sector is dust, we extract analytical expressions for the dark energy density and equation-of-state parameters, and we extend these solutions to the case where radiation is present too. We show that the universe exhibits the usual thermal history, with the sequence of matter and dark-energy eras, and according to the value of the dark-energy equation-of-state parameter can be quintessence-like, phantom-like, or experience the phantom-divide crossing during the evolution. Even in the case where the explicit cosmological constant is absent, the scenario at hand can very efficiently mimic cosmology, and is in excellent agreement with Supernovae type Ia observational data.
我们通过在宇宙视界上应用热力学第一定律来构建修正的宇宙学模型,但使用的是广义的、非广延的Tsallis熵而非通常的贝肯斯坦 - 霍金熵。我们得到了修正的宇宙学方程,这些方程在特殊极限情况下包含通常的方程,但在一般情况下包含首次出现的额外项,这些额外项构成了一个由非广延参数量化的有效暗能量部分。当物质部分为尘埃时,我们提取了暗能量密度和状态方程参数的解析表达式,并将这些解扩展到也存在辐射的情况。我们表明,宇宙呈现出通常的热历史,具有物质和暗能量时代的顺序,并且根据参数的值,暗能量状态方程参数在演化过程中可以类似精质、类似幻能,或者经历幻能分界线穿越。即使在不存在明确宇宙学常数的情况下,手头的模型也能非常有效地模拟宇宙学,并且与Ia型超新星观测数据高度吻合。