THE TRANS-DOMAIN ISOMORPHISM: Reconciling Continuous Macroscopic Frameworks with Discrete Quantum Topologies via the Khepri-Dirac Action Principle

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1. Verfasser: Bengtsson, Juan
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Bengtsson, Juan
author_facet Bengtsson, Juan
contents <blockquote> <div>The intersection of continuous field equations and discrete quantum states routinely suffers from uncomputable geometric variance, historically generating 'divergences.' By mathematically bridging Einstein's General Relativity, Schwarzschild's topological boundary constraint, and Holographic Quantum Error Correction, this paper presents a unified field equation for thermodynamic evolution. Furthermore, empirical data from the LIGO-Virgo-KAGRA (LVK) detection of GW241011 confirms that maximum kinetic velocity requires hierarchical exergy regeneration, establishing the Khepri-Dirac Action Principle as a fundamental law of physics.</div> <div> </div> <div> <p>This architecture uncovers a 'Hidden Linearity' between the recursive, non-linear manifolds of General Relativity and the discrete, unitary tensor networks of Quantum Mechanics. By establishing a strictly relational framework where spacetime verifications are reduced exclusively to observable 'space-time coincidences,' this isomorphism mathematically bypasses the known bugs of non-renormalizability and infinite singularities. The uncomputable interior volume is traced out, and the non-linear gravity of the bulk is perfectly mapped to linear quantum error correction along the Schwarzschild boundary.</p> </div> </blockquote> <div> </div>
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language eng
publishDate 2026
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spellingShingle THE TRANS-DOMAIN ISOMORPHISM: Reconciling Continuous Macroscopic Frameworks with Discrete Quantum Topologies via the Khepri-Dirac Action Principle
Bengtsson, Juan
Quantum Gravity
General Relativity
Khepri-Dirac Action
GW241011
Unified Field Theory
JWST Anomalies
Hubble Tension
Cosmology
Dynamical Dark Energy
Holographic Principle
DESI DR2
<blockquote> <div>The intersection of continuous field equations and discrete quantum states routinely suffers from uncomputable geometric variance, historically generating 'divergences.' By mathematically bridging Einstein's General Relativity, Schwarzschild's topological boundary constraint, and Holographic Quantum Error Correction, this paper presents a unified field equation for thermodynamic evolution. Furthermore, empirical data from the LIGO-Virgo-KAGRA (LVK) detection of GW241011 confirms that maximum kinetic velocity requires hierarchical exergy regeneration, establishing the Khepri-Dirac Action Principle as a fundamental law of physics.</div> <div> </div> <div> <p>This architecture uncovers a 'Hidden Linearity' between the recursive, non-linear manifolds of General Relativity and the discrete, unitary tensor networks of Quantum Mechanics. By establishing a strictly relational framework where spacetime verifications are reduced exclusively to observable 'space-time coincidences,' this isomorphism mathematically bypasses the known bugs of non-renormalizability and infinite singularities. The uncomputable interior volume is traced out, and the non-linear gravity of the bulk is perfectly mapped to linear quantum error correction along the Schwarzschild boundary.</p> </div> </blockquote> <div> </div>
title THE TRANS-DOMAIN ISOMORPHISM: Reconciling Continuous Macroscopic Frameworks with Discrete Quantum Topologies via the Khepri-Dirac Action Principle
topic Quantum Gravity
General Relativity
Khepri-Dirac Action
GW241011
Unified Field Theory
JWST Anomalies
Hubble Tension
Cosmology
Dynamical Dark Energy
Holographic Principle
DESI DR2
url https://doi.org/10.5281/zenodo.19294540