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Generalized interaction term inspired dark energy model in fractal universe

机译:分形宇宙中的广义互动术语启发暗能模型

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摘要

By assuming generalized nonlinear and linear interaction term between dark matter and dark energy, we investigate the cosmic accelerated expansion of the universe. For this reason, we suppose a flat fractal universe platform as well as Tsallis holographic dark energy model. The Hubble horizon is being adopted as an infrared cutoff and extracted different cosmological parameters as well as plane. It is observed that equation-of-state parameter exhibits the quintom-like nature while (omega d -omega d') lies in thawing and freezing regions for different parametric values for both the cases. Furthermore, the squared sound speed shows stable behavior for nonlinear interaction term but shows the partially stable behavior for linear term. For both cases, the deceleration parameter leads to the accelerated phase of the universe and the consequences are comparable with observational data. The results for r-s plane, leads to the quintessence and phantom region of the universe for nonlinear case while this plane represents the Chaplygin gas behavior for linear term. The Om diagnostic also shows the satisfying results.
机译:通过假设暗物质和暗能之间的广义非线性和线性相互作用项,研究了宇宙的宇宙加速扩张。出于这个原因,我们假设平坦的分形宇宙平台以及Tsallis全息暗能模型。哈勃地平线被采用作为红外截止,提取不同的宇宙学参数以及平面。观察到,状态方程参数表现出典型的性质,而(Omega d-omega d')在案例中呈不同参数值的解冻和冰点。此外,平方速度显示出非线性相互作用术语的稳定行为,但是显示线性术语的部分稳定行为。对于这两种情况,减速参数导致宇宙的加速阶段,后果与观察数据相当。 R-S平面的结果导致宇宙的Quintessence和虚线区域,用于非线性情况,而该平面表示线性术语的Chaplygin气体行为。 OM诊断还显示了令人满意的结果。

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