Physics & Spacepreprint2026-08-01

8.15 Cosmic Initial State

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Abstract

Starting from the total cosmic zero state, we derive the full process of the cosmic initial state. Region generation is based on the seven-level recurrence scale harmonic expansion; particle masses are determined by the spectral expansion/Born rule; the ℳ𝒞ℐ three-sector M-C waist-edge coupling corresponds to electromagnetic interaction, necessarily accompanied by electrons and photons. We establish the cosmic initial state – decoherence duality: the initial state is the unidirectional condensation of information from I³ to M³, while decoherence is the leakage process of information from M³ to I³, yielding a decoherence physical time days. Numerical spectral computation: among 1000 regions, 31.5% complete the single-particle three-world cycle; the majority of S≈137 ground-state-type regions do not complete the cycle, but a few exceptions exist, indicating that "single-particle cycling" and "S≈137 ground state" are a statistical trend rather than absolute mutual exclusion. All parameters are consistent with the foundational volumes. **Keywords:** Cosmic Initial State; Seven-Level Recurrence; Birkhoff Mixing Matrix Fixed-Point Second-Order Structure; Three-World Cycle; Decoherence Duality; Causal Progression; {2,3,5} Interlocking; Consummate Reproduction

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-01

Authors: guobin ouyang