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January 6, 20260 citationsOpen Access

Holographic Genesis: Unification of Baryon Asymmetry, Dark Matter, and Gravitational Waves at the 50 TeV Scale

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EGEmiliano G. Greco

Key Points

  • To develop a unified theoretical framework that addresses baryon asymmetry and dark matter.
  • Incorporated the Resonant Protection mechanism to relax domain wall velocity constraints.
  • Utilized findings from the ALICE Collaboration to support the model.
  • Calculated the stochastic gravitational wave signals predicted by the framework.
  • Proposed a mechanism where baryon asymmetry co-generates visible matter and scalar dark matter.
  • Predicted characteristic gravitational wave signals at 0.1 Hz, detectable by DECIGO and BBO.

Abstract

Version 1. 1: Updated to incorporate the "Resonant Protection" mechanism (Greco, 2026), which relaxes the hydrodynamic constraints on the domain wall velocity, and includes updated references to the ALICE Collaboration findings. ******************************************************************************************************************************************************* We present "Holographic Genesis, " a unified theoretical framework that resolves the Baryon Asymmetry of the Universe (BAU), the origin of Dark Matter, and neutrino masses through a single confinement phase transition at ΛC ≈ 50 TeV. Built upon the vacuum stability demonstrated in the Constructive Gauge Theory Program (CGTP) and the geometry of the Corq Model, we demonstrate that the phase transition in the strongly coupled sector is first-order. Crucially, we incorporate the "Resonant Protection" mechanism—mediated by the finite lifetime of Top Partners (MT' ≈ 2. 5 TeV) —which ensures the survival of the chiral asymmetry even in high-friction regimes, effectively relaxing the strict requirement for supersonic domain walls (vw → 1). The necessary CP violation arises from resonant mixing in the Top Partner sector, rectified by a 5D Chern-Simons term that biases topological transitions. The model predicts a Cogenesis mechanism where the decay of the asymmetry simultaneously generates visible matter and a scalar dark matter candidate (η ≈ 12 GeV) with a natural density ratio ΩDM/ΩB ≈ 5. Finally, we calculate the stochastic gravitational wave signal, predicting a characteristic peak at f ≈ 0. 1 Hz detectable by DECIGO and BBO, offering an experimental "smoking gun" for physics beyond the Standard Model.

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Cite This Study

Emiliano G. Greco (2026) studied this question.

synapsesocial.com/papers/695d854b3483e917927a4836https://doi.org/10.5281/zenodo.18143865
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