论文标题

宇宙进化的多流体理论及其热力学分析

Multiple fluid theory of cosmic evolution and its thermodynamic analysis

论文作者

Sadhukhan, Shouvik, Kar, Alokananda, Chattopadhyay, Surajit

论文摘要

在本文中,我们讨论了在宇宙演化过程中对热力学分析的修改后的重力和标量模型。我们在计算中使用了修改后的重力(r,t)= r+2λt。 The basic aim behind this paper is to discuss a theory that unifies modified gravity with DE models including the solutions of some cosmological problems like thermodynamics energy conditions violation problems, finite time future singularity problems, initial singularity problem, Cosmic inflation problem, decelerated expansion problem, graceful exit problem, reheating problem, bouncing nature problem, phase transformation-spontaneous symmetry breaking problem, negative heat capacity paradox problem and obviously the present day宇宙问题(不断降低温度问题,当今DE主导的扩展问题)。我们已经在计算中建立了粘性效应(均和负粘度),并通过引入两个特殊类型的能量循环来讨论负阳性粘度。最后,我们通过宇宙扰动讨论了宇宙进化的稳定条件,并解决了不稳定性问题。我们还显示了根据我们的计算,有和没有粘性流体的状态发现器轨迹,以将我们的研究与其他独立DE模型的结果进行比较

In this paper we have discussed the modified gravity and scalar field DE model specifically DBI essence model with the analysis of thermodynamics during cosmological evolution. We have used the modified gravity with the form f(R,T)=R+2ΛT in our calculations. The basic aim behind this paper is to discuss a theory that unifies modified gravity with DE models including the solutions of some cosmological problems like thermodynamics energy conditions violation problems, finite time future singularity problems, initial singularity problem, Cosmic inflation problem, decelerated expansion problem, graceful exit problem, reheating problem, bouncing nature problem, phase transformation-spontaneous symmetry breaking problem, negative heat capacity paradox problem and obviously the present day universe problems (Continuously decreasing temperature problem, present day DE dominated expansion problem). We have established the viscous effects (both positive and negative viscosity) in our calculation and discussed the negative-positive viscosity by introducing two special type of energy cycles. Finally, we have discussed the stability conditions for universe evolution through cosmic perturbation and resolved the instability problems. We have also shown the state finder trajectories for both with and without viscous fluid on the basis of our calculations to compare our research with the results of other independent DE models

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