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April 1, 20260 citationsOpen Access

From Zero-Dimensional Projection to the Real World: Heterodimensional Expansion and Alignment with the Standard Model plus Cosmology Framework Collaboration (Integrated Version)

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GYGuanhua Yu

Key Points

  • The research aims to develop a mathematical framework that dynamically generates structure from a zero-dimensional state.
  • Developed a five-layer framework including functional analysis, operator algebra, and representation theory.
  • Utilized non-commuting orthogonal projection operators P and Q to facilitate structural emergence.
  • Established rigorous proofs to validate the framework's findings regarding gauge groups and mass spectra.
  • Successfully derived the Standard Model gauge group SU(3)×SU(2)×U(1).
  • Revealed a hierarchical fermion mass spectrum aligned quantitatively with cosmological observations.
  • Clarified the significance of the 'i-axis' in relation to Lie-algebra closure and holographic duality.

Abstract

We propose a minimal mathematical framework in which structure degrees of freedom emerge dynamically from an initially structureless zero-dimensional state in a Hilbert space H, driven by two non-commuting orthogonal projection operators P and Q. The framework is organized into five rigorous layers---functional analysis → operator algebra → representation theory → Lie algebra emergence → physical interpretation and holographic alignment---naturally yielding the Standard Model gauge group SU(3)×SU(2)×U(1), a hierarchical fermion mass spectrum, and quantitative alignment with cosmological observations (dark-energy density and the holographic area law). We clarify that the pivotal “i-axis” is a purely algebraic feature of the complex structure operator J in the operator algebra; it guarantees Lie-algebra closure and, under holographic duality, corresponds to an internal phase direction in symmetry space. The holographic principle (AdS/CFT correspondence) manifests here as a bulk-boundary measure correspondence in the heterodimensional space. All checkpoints are verified by strict proofs.

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Cite This Study

Guanhua Yu (2026) studied this question.

synapsesocial.com/papers/69ccb72e16edfba7beb8905ahttps://doi.org/10.5281/zenodo.19337398
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