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      The past attractor in inhomogeneous cosmology

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          Abstract

          We present a general framework for analyzing spatially inhomogeneous cosmological dynamics. It employs Hubble-normalized scale-invariant variables which are defined within the orthonormal frame formalism, and leads to the formulation of Einstein's field equations with a perfect fluid matter source as an autonomous system of evolution equations and constraints. This framework incorporates spatially homogeneous dynamics in a natural way as a special case, thereby placing earlier work on spatially homogeneous cosmology in a broader context, and allows us to draw on experience gained in that field using dynamical systems methods. One of our goals is to provide a precise formulation of the approach to the spacelike initial singularity in cosmological models, described heuristically by Belinski\v{\i}, Khalatnikov and Lifshitz. Specifically, we construct an invariant set which we conjecture forms the local past attractor for the evolution equations. We anticipate that this new formulation will provide the basis for proving rigorous theorems concerning the asymptotic behavior of spatially inhomogeneous cosmological models.

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          Most cited references29

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          Oscillatory approach to a singular point in the relativistic cosmology

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            Investigations in relativistic cosmology

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              A general solution of the Einstein equations with a time singularity

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                Author and article information

                Journal
                01 April 2003
                Article
                10.1103/PhysRevD.68.103502
                gr-qc/0304002
                e8d4f787-b69e-436d-9086-b107b65765b0
                History
                Custom metadata
                QMUL-AU-2003-001, uct-cosmology-03/01
                Phys.Rev. D68 (2003) 103502
                31 pages, 10 *.ps figures, 3 tables, LaTeX2e (10pt), submitted for publication to Physical Review D
                gr-qc astro-ph math-ph math.MP

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