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General solution of a cosmological model induced from higher dimensions using a kinematical constraint

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arxiv 1407.2231 v3 pith:I4Q24XBI submitted 2014-07-08 gr-qc math-phmath.MPnlin.SI

classification gr-qcmath-phmath.MPnlin.SI
keywords internalmodelconstraintcosmologicaldimensionaldimensionsdynamicalgeneral
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abstract

In a recent study Akarsu and Dereli (Gen. Relativ. Gravit. 45:1211, 2013) discussed the dynamical reduction of a higher dimensional cosmological model which is augmented by a kinematical constraint characterized by a single real parameter, correlating and controlling the expansion of both the external (physical) and internal spaces. In that paper explicit solutions were found only for the case of three dimensional internal space ($n=3$). Here we derive a general solution of the system using Lie group symmetry properties, in parametric form for arbitrary number $n=1,2,3,\dots$ of internal dimensions. We also investigate the dynamical reduction of the model as a function of cosmic time $t$ for various values of $n$ and generate parametric plots to discuss cosmologically relevant results.

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  1. Role of internal space correlations in the dynamics of a higher-dimensional Bianchi type-I universe: shear scalar and Hubble parameter perspectives

    gr-qc 2025-01 conditional novelty 5.0 of 10

    A constant correlation between external and internal expansion rates yields exact Bianchi type-I solutions whose effective dark energy mimics a cosmological constant at late times and a steady-state universe for negat...

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