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January 20, 20260 citationsOpen Access

Quantum Field Theory as an Interface Algebra in Entanglement-Algebraic Spacetime

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MLMichael E. Labhard

Key Points

  • This research aims to redefine quantum field theory from a non-fundamental perspective, focusing on interface-level descriptions.
  • Reconstruct quantum field theory using a single scalar assignment without fundamental spacetime or particles.
  • Employ the algebraic framework established in previous works to analyze interface-level admissibility relations.
  • Demonstrate that standard quantum field theory can be obtained from admissibility-compatible correlation data.
  • Mass, energy, and particles are identified as emergent algebraic invariants rather than fundamental entities.
  • Microcausality arises from admissibility compatibility instead of geometric imposition.
  • Identify breakdown of algebraic interface at the Planck scale, suggesting saturation rather than inconsistency.

Abstract

This paper is archived as a speculative research work. We reconstruct quantum eld theory as an interface-level description arising from a single scalarassignment Φ : X → R+ , without assuming spacetime, particles, elds, or dynamics as fundamentalprimitives. Building on the kernel and interface framework established in Labhard 1, 2, 3, we showthat the breakdown of localization and trajectories at small scales necessitates an algebraic represen-tation of interface-level admissibility relations. Algebraic quantum eld theory (AQFT) is adoptedas the minimal interface language compatible with causality once geometry fails. Microcausality isderived from interface-level admissibility compatibility rather than imposed geometrically, and quan-tum states are reinterpreted as summaries of interface-accessible relations among observables. Mass,energy, and particles emerge as algebraic invariants and excitations, not as ontological constituents.We demonstrate explicitly that standard quantum eld theory is recoverable within this frameworkby reconstructing a free scalar eld from admissibility-compatible correlation data and by mappingthe resulting structure to the HaagKastler axioms. Finally, we identify the domain of validity ofthe algebraic interface and show that its breakdown at the Planck scale reects admissibility satu-ration and failure of algebraic closure, not physical inconsistency. These results establish quantumeld theory as a stable but non-fundamental interface within a unied scalar-eld reconstruction ofphysics.

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Cite This Study

Michael E. Labhard (2026) studied this question.

synapsesocial.com/papers/696f1a629e64f732b51eeaeahttps://doi.org/10.5281/zenodo.18291705
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Imbalance, Causality, and the Interface Origin of Quantum Structure in Entanglement-Algebraic Spacetime2026
  2. 2Relational Algebraic Quantum Spacetime (RAQS): A UV-Complete Background-Independent Framework with Forced Emergent Limits in Gravity, Cosmology, and Gauge Theory2026
  3. 3Quantum reference frames, measurement schemes and the type of local algebras in quantum field theory2024 · 1 citations
  4. 4P-QFT: The Geometric Reduction of Quantum Field Theory — From Spatial Micro-elements to Feynman Rules2026
  5. 5P-QFT: The Geometric Reduction of Quantum Field Theory — From Spatial Micro-elements to Feynman Rules(v1.1)2026