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March 6, 20260 citationsOpen Access

Resolution of Systemic Asymmetry in Field Interactions: A Processual Ontology of Mass and the Gravitonic Nature of |ψ| 2

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YTYassin TananUniversity of Turin

Key Points

  • To redefine inertial mass as an emergent dynamic equilibrium arising from an informational transduction process.
  • Mathematical analysis of the Dirac Lagrangian modifications.
  • Modeling fermions as η-transducers in the quantum vacuum.
  • Identification of |ψ| 2 as physical gravitonic flow ρg.
  • Exploration of stress-energy tensor emergence from informational gradients.
  • Assessment of thermodynamic implications of frequency saturation.
  • Systemic asymmetry between wave function probability and General Relativity is resolved.
  • Gravitonic coalescence in molecular structures is established as a concept.
  • Experimental signatures for detection through Raman atom interferometry are presented.

Abstract

propose a fundamental revision of the founda- tions of inertial mass, defining it not as an intrinsic scalar property but as an emergent dynamic equi- librium resulting from an informational transduc- tion process. Within this framework, fermions are modeled as η-transducers operating in the quan- tum vacuum, continuously sampling the Higgs ex- pectation value. We demonstrate that the systemic asymmetry between the probabilistic nature of the wave function and the geometric stability of Gen- eral Relativity can be resolved by identifying the probability density |ψ| 2 as a physical gravitonic flow ρg. This article mathematically analyzes the mod- ification of the Dirac Lagrangian, the emergence of the stress-energy tensor from informational gradi- ents, and the thermodynamic implications of fre- quency saturation at the relativistic limit. Finally, we present the foundations of gravitonic coalescence in molecular structures and the experimental signa- tures detectable through Raman atom interferome- try.

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Cite This Study

Yassin Tanan (2026) studied this question.

synapsesocial.com/papers/69aa7077531e4c4a9ff5a3abhttps://doi.org/10.5281/zenodo.18857596
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