Study of the scalar-fermionic model containing linear lagrangian fields of matter within the framework of minimal coupling

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
P. Tsyba, G.S. Altayeva, О.V. Razina
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Abstract

In this article, we study a model of the universe with the scalar field and the fermionic field interacting via a Yukawa-type potential. In the model, the component contributions of each of the fields are determined to the total density and pressure of dark energy. We have considered the solution of the cosmological model for the scale factor with two functional time dependences. The Yukawa-type field does not give its input to the general pressure. In the power law case, there is a significant contribution to the total increase in pressure, to the exponential — the scalar field. There are many cases when the universe makes a transition between successive epochs in various models of cosmological expansion. These regularities impose some restrictions on the profile of the scalar- fermionic field interaction and the general cosmological dynamics. Energy conditions were found to check the model under the study. In the studied model, the null energy condition, the strong energy condition, the dominant energy condition are fulfilled, and the weak energy condition, which is not mandatory, is not fulfilled. It is shown how it is possible to connect the cosmographic parameters — parameters of deceleration q, jerk j and snap s with the power low the scale factor. We investigated these restrictions using cosmological solutions with an evolving equation of state, such that a smooth transition between different epochs can always occur in the universe. The scalar-fermionic model under study describes the accelerated modes of expansion of the universe. The obtained solutions correspond to the results predicted by the theory and observational data.
最小耦合框架下包含线性拉格朗日场的标量-费米子模型的研究
在本文中,我们研究了标量场和费米子场通过Yukawa型势相互作用的宇宙模型。在该模型中,每个场的分量贡献被确定为暗能量的总密度和压力。我们考虑了具有两个函数时间依赖性的比例因子的宇宙学模型的解。Yukawa型字段不向一般压力提供输入。在幂律的情况下,对压力的总增加,对指数——标量场有很大的贡献。在各种宇宙学膨胀模型中,宇宙在连续的时代之间发生转换的情况很多。这些规律对标量-费米子场相互作用的轮廓和一般宇宙学动力学施加了一些限制。在研究中发现了能量条件来检验模型。在所研究的模型中,零能量条件、强能量条件、主能量条件被满足,而非强制性的弱能量条件没有被满足。它展示了如何将宇宙学参数——减速度q、加速度j和快照s的参数与功率低的比例因子联系起来。我们使用具有演化状态方程的宇宙学解来研究这些限制,这样在宇宙中总是可以发生不同时期之间的平稳过渡。正在研究的标量费米子模型描述了宇宙加速膨胀的模式。所获得的解与理论和观测数据预测的结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
50.00%
发文量
32
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