Baryogenesis in the Quantum Entanglement Spacetime Theory
Authors/Creators
Description
A quantitative route to the matter–antimatter imbalance is presented in clear terms. The outcome is a closed expression that links the observed baryon asymmetry directly to the total entropy difference constructed from QuEST primitives, within the Quantum Entanglement Spacetime Theory (QuEST). The derivation is fully compliant with the QuEST Execution Protocol (QEP) and relies only on QuEST Postulates 1 through 4 (P1–P4). Single–tile increments are assembled into a mirror–odd contribution with an explicitly controlled remainder, and a mirror bijection supplied by Postulate 4 secures the required parity structure. The mapping to the asymmetry is mediated by an acceptance–ratio function with no adjustable normalization and no external inputs. No additional postulates, imported theorems, or hidden assumptions are introduced, yielding a practical procedure for evaluating the asymmetry directly from QuEST–native quantities and providing clear targets for empirical falsification.
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QuEST_Baryogenesis_Derivation.pdf
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(246.9 kB)
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Additional details
References
- O. Ahaneku, Quantum entanglement spacetime theory (QuEST), Zenodo (2025).