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June 3, 20260 citationsOpen Access

Cosmological Lithium Solution from Discrete Gauged B-L

SKSeth Koren

Key Points

  • This research aims to resolve the cosmological lithium problem by proposing a new physics mechanism involving gauged baryon minus lepton number.
  • Developed a theoretical framework using an extended standard model with gauged baryon minus lepton number
  • Investigated interactions between cosmic strings and proton-positron conversion processes
  • Analyzed the implications of electric-magnetic interplay to amplify cross sections
  • Produced a mechanism for disintegrating primordial lithium nuclei via cosmic string interactions
  • Demonstrated that this new approach uniquely modifies lithium abundance post-big bang nucleosynthesis
  • Provided a microphysical justification for the observed lithium levels

Abstract

The cosmological lithium problem—that theory predicts a primordial abundance far higher than the observed value—has resisted decades of attempts by cosmologists, nuclear physicists, and astronomers alike to root out systematics. We reconsider this problem in the setting of the standard model extended by gauged baryon minus lepton number, which we spontaneously break by a scalar with charge six. Cosmic strings from this breaking can support interactions converting three protons into three positrons, and we argue that an "electric"-"magnetic" interplay can give this process an amplified, strong-scale cross section in an analog of the Callan-Rubakov effect. We suggest such cosmic strings have disintegrated 𝒪⁡(1) of the primordial lithium nuclei, and lay out what is necessary for this scheme to succeed. To our knowledge this is the first new physics mechanism with microphysical justification for the abundance of lithium uniquely to be modified after big bang nucleosynthesis.

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Cite This Study

Seth Koren (2023) studied this question.

synapsesocial.com/papers/6a1fc7dcdee9eb8c0dce861ehttps://doi.org/10.6082/50mrv-6k165
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Cosmological Lithium Solution from Discrete Gauged $B-L$2023
  2. 2The Cosmological Lithium Problem Through the Lens of GCST Global Complexity–Stability Theory as a Resolution to the ⁷Li Discrepancy in Big Bang Nucleosynthesis2026
  3. 3The Cosmological Lithium Problem Through the Lens of GCST Global Complexity–Stability Theory as a Resolution to the ⁷Li Discrepancy in Big Bang Nucleosynthesis2026
  4. 4Primordial Lithium Abundance Suppression via Geometric Cross-Section Enhancement in M-Theory Compactifications on G2-Holonomy Manifolds2026
  5. 5P3: A Steady-State Nucleosynthesis : Resolution of the Cosmological Lithium Problem2026