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Cosmological Einstein-Maxwell model with g-essence

机译:宇宙学爱因斯坦 - 麦克斯韦模型与G-Escence

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摘要

In this paper, we study the model of the late universe with the homogeneous, isotropic and flat Friedmann-Robertson-Walker metric, where the source of the gravitational field is based on the fermion and boson fields, with the Maxwell term F mu nu F mu nu in four dimensions. The actuation of the Maxwell term for the Einstein gravity makes it possible to find new approaches to solve the problem of the observed accelerated expansion of the universe. Energy conditions have been obtained and studied. These conditions impose very simple and model-independent restrictions on the behavior of energy density and pressure since they do not require a specific equation-of-state of matter. To consider the model, the energy conditions NEC, WEC, DEC are realized, and the SEC condition is violated. The boson and fermion fields are responsible for the accelerated regime at early times, but since the total pressure tends toward zero for large times, a transition to a decelerated regime occurs. Maxwell field is crucial only in the early times.
机译:在本文中,我们使用均匀,各向同性和平坦的Friedmann-Robertson-Walker公制研究了晚期宇宙的模型,其中引力场的来源基于麦克斯韦术语F mu nu f mu nu四维。用于爱因斯坦重力的麦克斯韦术语的致动使得可以找到解决宇宙所观察到的加速扩张问题的新方法。已经获得并研究了能量条件。这些条件对能量密度和压力的行为施加了非常简单和模型的限制,因为它们不需要特定的物质方程。要考虑模型,能源条件NEC,WEC,DEC是侵犯的。玻色子和费米偏见的领域对早期加速的制度负责,但由于总压力趋向于零,因此发生了减速制度的过渡。 Maxwell领域仅在早期时间至关重要。

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