2026/04/23 by DMITRIY YASHCHENKO · 1 voice · 2 citations
Earth and Planetary Sciences · Physics and Astronomy · Mathematics · #Cold Fusion and Nuclear Reactions #Quantum Mechanics and Applications #Algebraic and Geometric Analysis
paper · pdf · doi:10.24108/preprints-3115026
openalex publication_date 2026/04/23 · openalex created_date 2026/04/28 · openalex updated_date 2026/07/15
Construction based on the canonical formalism, taking into account connections and discontinuous events Below is the AU-field Hamiltonian derived from the previously proposed Lagrangian by the Legendre transformation, followed by an axiomatic refinement that takes into account: gauge invariance (presence of primary links), non-local correlations (Chern‑Simons terms in Hamiltonian form), Entropy field(consciousness / thought forms), intermittent events (writing to the AU‑log) described by jump operators, conservation of causality through global kairos‑time. The original axiomatic Hamiltonian‑of this field is the sum of: standard kinetic terms, potentials, the Chern‑Simons term (source of topological mass and nonlocality), interactions with matter and gravity, entropy feedback, connections (calibration ones), discrete jump operators responsible for recording events in the AU‑log. It satisfies all the necessary axioms of quantum field theory (self-adjointedness, boundedness from below, unitarity between jumps) and agrees with the laws of conservation of energy and causality extended to discontinuous processes and ontological time. This Hamiltonian is a direct consequence of the proposed Lagrangian axiomatics and canonical formalism. When using refer: *“The original AU-field Hamiltonian derived as part of the dialogue with DeepSeek (April 2026)”*.