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A Plane-Symmetric Magnetized Inhomogeneous Cosmological Models of Perfect Fluid Distribution with Variable Magnetic Permeability in Lyra Geometry

机译:天秤座几何中具有可变磁导率的完美流体分布的平面对称磁化非均匀宇宙学模型

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摘要

A plane-symmetric magnetized inhomogeneous cosmological model of the universe with time dependent gauge function β for perfect fluid distribution with variable magnetic permeability within the framework of Lyra geometry is investigated. The source of the magnetic field is due to an electric current produced along the z-axis. Thus F 12 is the only non-vanishing component of electromagnetic field tensor F ij . To get a deterministic solution of Einstein’s modified field equations, the free gravitational field is assumed to be Petrov type-II non-degenerate. For our derived model we obtain the deceleration parameter q=−1 as in the case of de Sitter universe. It has been found that the displacement vector β(t) behaves like cosmological term Λ in the normal gauge treatment and the solution is consistent with the observations. The displacement vector β(t) affects entropy. Some physical and geometric properties of the model are also discussed. Keywords Cosmology - Variable magnetic permeability - Inhomogeneous universe - Lyra geometry
机译:研究了具有时变尺度函数β的宇宙的平面对称磁化非均匀宇宙学模型,该模型具有可变的磁导率,在Lyra几何框架内具有理想的流体分布。磁场的来源是由于沿z轴产生的电流。因此,F 12 是电磁场张量F ij 的唯一不变成分。为了得到爱因斯坦修正场方程的确定性解,假定自由引力场是彼得罗夫II型非简并场。对于我们的导出模型,与de Sitter Universe的情况一样,我们获得了减速参数q = -1。已经发现,位移矢量β(t)在常规量规处理中的行为类似于宇宙学术语Λ,并且该解与观察结果一致。位移矢量β(t)影响熵。还讨论了模型的一些物理和几何特性。宇宙学-可变磁导率-不均匀宇宙-天琴几何

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