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April 21, 20260 citationsOpen Access

Resolution of the Cosmological Lithium Problem via Topological Hydro-Elasticity of the 4D Continuum

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TNTomáš Novotný

Key Points

  • The aim is to analytically resolve the Cosmological Lithium Problem using hydro-elastic mechanics of a 4D continuum.
  • Modeled the early universe as a 3D phase membrane under 4D macro-pressure.
  • Analyzed the interactions of transverse shear waves and Lithium-7 nuclei.
  • Utilized a theoretical framework describing the universe as a hydro-elastic mechanism.
  • Demonstrated a 2/3 destruction probability of primordial Lithium-7 due to topological effects.
  • Achieved alignment of survival rates with theoretical predictions and observational data.
  • Explained the early deuterium bottleneck and excess Lithium-6 production.

Abstract

This short communication provides an analytical resolution to the Cosmological Lithium Problem via the hydro-elastic mechanics of a 4D spatial continuum. By modeling the early universe as a 3D phase membrane subjected to extreme 4D macro-pressure, we demonstrate that the missing two-thirds of primordial Lithium-7 is a direct consequence of topological filtration. Specifically, the geometric interaction between destructive 2D transverse shear waves and the vulnerable 1D asymmetric topological axis of the Lithium-7 nucleus yields an exact 2/3 destruction probability. The resulting 1/3 survival rate perfectly aligns theoretical SBBN predictions with Spite plateau observations (1, 6 10^-10), while concurrently explaining the early deuterium bottleneck and the primordial Lithium-6 excess. This short communication is based on the comprehensive theoretical framework 'The Universe as a Hydro-Elastic 4D Mechanism' (Archived at Zenodo: DOI 10. 5281/zenodo. 19616545).

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Cite This Study

Tomáš Novotný (2026) studied this question.

synapsesocial.com/papers/69e713b4cb99343efc98d2aehttps://doi.org/10.5281/zenodo.19652789
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