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March 23, 20260 citationsOpen Access

KIR-QER-Nezirov: Kinetically Induced Spacetime and Quantum Field Emergence of Reality — Complete Theoretical Framework with 22 Supplements

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RNRaffael Cemail Nezirov

Key Points

  • To present a unified field theory blending General Relativity and the Standard Model through a scalar field.
  • Formalization of the KIR/QER-Nezirov Framework in version 10.3
  • Derivation of emergent gravity and spacetime geometry from kinetic induction of a scalar field
  • Parameter-free calculations of particle masses and flavor physics
  • Provides a theoretical basis for gravity as an emergent phenomenon
  • Solves the Hubble Tension and explains galaxy rotation without Dark Matter
  • Outlines the stability of the framework via Renormalization Group techniques

Abstract

KIR/QER-Nezirov A Scalar-Field Theory of Emergent Spacetime, Gravity, and Particle Structure Raffael Cemail Nezirov · Version V10.3 · 24 Documents This repository contains the complete formalization of the KIR/QER-Nezirov Framework (Version 10.3), a comprehensive unified field theory that reconciles General Relativity (GR) with the Standard Model (SM) of particle physics through a single fundamental scalar field, denoted as σ∈0,1. The framework is structured into two primary sectors: Kinetic-Induced Spacetime (KIR): Derives the gravitational interaction and the geometry of spacetime as an emergent phenomenon of the σ-field’s kinetic induction, providing a formal Correspondence Theorem to the Einstein Field Equations. Quantum Emergence of Reality (QER): Explains the origin of gauge symmetries (SU(3)×SU(2)×U(1)) and fermion masses as resonant states within the σ-potential. Key Scientific Breakthroughs in V10.3: Parameter-Free Flavor Physics: A complete derivation of the Lepton Mass Hierarchy and the 3×3 CKM Matrix diagonalization with zero free parameters, yielding results within 1σ of PDG experimental values. Cosmological Resolution: A physical solution to the Hubble Tension (H0) and the derivation of the Radial Acceleration Relation (RAR), explaining galaxy rotation curves without the necessity for Dark Matter. Mathematical Rigor: Includes 17 Supplements (I–XVII+5 extra Supplements) covering the Fundamental Action, Euler-Lagrange derivations, Renormalization Group stability up to the Planck scale, and Gravitational Wave signatures. This dataset includes the main treatise, all mathematical supplements, and residual analysis data from 175 SPARC-sampled galaxies.

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Cite This Study

Raffael Cemail Nezirov (2026) studied this question.

synapsesocial.com/papers/69c08b6ba48f6b84677f8814https://doi.org/10.5281/zenodo.19142156
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