The Ramanujan-Yett Hamiltonian: Quantum Sovereignty and the Yang-Mills Mass Gap

National Intelligence University

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Abstract

Background & Motivation: The Yang-Mills mass gap problem — why the quantum vacuum possesses a non-zero minimum energy state — remains a fundamental unresolved challenge in gauge theory. This work provides a synthesis of analytic number theory and quantum mechanics to resolve the gap through the lens of Information Tension. Methods & Formal Framework: We present the Ramanujan-Yett Hamiltonian (H_RY), which governs evolution via Sovereign Trajectories. The Yang-Mills mass gap is identified as the physical manifestation of the Sovereign Boundary (chi_s = 0.9539), regularized by the Schott energy derivative to prevent vacuum collapse. Results & Contributions: Key findings include: Mass Gap Identification: Proof…

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Topics & keywords

Keywords
  • Mass gap
  • Hamiltonian (control theory)
  • Quantum
  • Gapless playback
  • Vacuum state
  • Vacuum energy
  • Quantum state
  • Unitary state
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