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Thermodynamics of the viscous f(T, B) gravity in the new agegraphic dark energy model

机译:新型夜代暗能模型中粘性F(T,B)重力的热力学

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In this paper, we first obtain the energy density by the approach of the new agegraphic dark energy model, and then the f(T, B) gravity model is studied as an alternative to the dark energy in a viscous fluid by flat-FRW background, in which T and B are torsion scalar and boundary term. The Friedmann equations will be obtained in the framework of modified teleparallel gravity by tetrad components. We consider that the universe dominates with components such as matter and dark energy by an interacting model. The Hubble parameter is parameterized by the power-law for the scale factor, and then we fit the corresponding Hubble parameter with observational data constraints. The variation of the equation of state (EoS) for dark energy is plotted as a function of the redshift parameter, and the accelerated expansion of the universe is explored. In what follows, the stability of the model is also studied on the base of the sound speed parameter. Finally, the generalized second law of thermodynamics is investigated by entropies of inside and on the boundary of the apparent horizon in thermodynamics equilibrium.
机译:在本文中,我们首先通过新的夜间暗能模型的方法获得能量密度,然后研究F(t,b)重力模型作为粘性流体中的暗能的替代方案,其中T和B是扭转标量和边界术语。 Friedmann方程将通过TETRAD组分在改进的透镜重力框架中获得。我们认为宇宙通过交互模型与诸如物质和暗能的组件主导。 Hubble参数由幂律参数化,用于比例因子,然后使用观察数据约束将相应的Hubble参数符合。绘制暗能量的状态方程(EOS)的变化被绘制为Redshift参数的函数,并探讨了宇宙的加速扩展。在下文中,在声速参数的基础上还研究了模型的稳定性。最后,通过内部和在热力学平衡中表观视野的熵来研究普遍的热力学定律。

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