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Cosmological dark energy from the cosmic QCD phase transition and colour entanglement

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arxiv hep-ph/0307366 v2 pith:T4OLDRJY submitted 2003-07-30 hep-ph astro-ph

classification hep-phastro-ph
keywords darkamountenergyentanglementresponsiblestandarduniverseaccelerated
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Recent astrophysical observations indicate that the universe is composed of a large amount of dark energy (DE) responsible for an accelerated expansion of the universe, along with a sizeable amount of cold dark matter (CDM), responsible for structure formation. At present, the explanations for the origin or the nature of both CDM and DE seem to require ideas beyond the standard model of elementary particle interactions. Here, for the first time, we show that CDM and DE can arise entirely from the standard principles of strong interaction physics and quantum entanglement. Quantitative agreement with the present data obtains without the need for any adjustable parameters.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Deriving the Cosmological Constant and Nature's Constants from SU(3) Confinement Volume

    gr-qc 2025-07 reject novelty 5.0 of 10

    The paper claims that the dark energy density equals the Planck-scale gluon zero-point energy divided by N = (R_u/R_p)^3 ≈ 10^123, with each QCD domain mapping to a Planck-area patch on the cosmic horizon.

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