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A Minimal Explanation of the Primordial Cosmological Perturbations

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arxiv 2302.00344 v1 pith:YUREJVIS submitted 2023-02-01 hep-ph astro-ph.COgr-qchep-th

classification hep-phastro-ph.COgr-qchep-th
keywords perturbationsprimordialzeroamplitudecalculatedensitydimensionexplanation
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We outline a new explanation for the primordial density perturbations in cosmology. Dimension zero fields are a minimal addition to the Standard Model of particle physics: if the Higgs doublet is emergent, they cancel the vacuum energy and both Weyl anomalies without introducing any new particles. Furthermore, the cancellation explains why there are three generations of elementary particles, including RH neutrinos. We show how quantum zero point fluctuations of dimension zero fields seed nearly scale-invariant, Gaussian, adiabatic density perturbations. We calculate the amplitude of the primordial perturbations in terms of Standard Model couplings and find a result consistent with large scale observations. Subject to two key theoretical assumptions, both the amplitude and the tilt we calculate agree with the observed values, with no free parameters.

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Cited by 2 Pith papers

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

  1. Fixed points of classical gravity coupled with a Standard-Model-like theory

    hep-th 2025-09 conditional novelty 6.0 of 10

    A free conformal matter content with n1/2=4n1 and n'_0=3n1 gives a UV fixed point where all stress tensor correlators are finite; the Standard Model with right-handed neutrinos and 36 four-derivative scalars is such a theory.

  2. CMB Constraints on Quantized Spatial Curvature $\Omega_K$ in globally CPT-symmetric universes

    astro-ph.CO 2025-09 reject novelty 5.0 of 10

    Matching two wavevector quantization conditions in a closed CPT-symmetric universe predicts discrete spatial curvature values, with Planck data favoring ΩK ≈ -0.039.

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