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March 1, 20260 citationsOpen Access

Foundational Temporal Theory (FTT): A Mathematical Program for Emergent Quantum Mechanics and Spacetime from Causal Growth

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AGAlik Gimranov

Key Points

  • The central aim is to present a mathematical framework where time is fundamental, proposing how space and quantum mechanics emerge from causal networks.
  • Developed a mathematical program based on axioms and theorems
  • Introduced an effective constant from growth statistics
  • Constructed a Hilbert space using the GNS method
  • Applied a causally covariant coarse-graining procedure
  • Provided explicit proofs of theorems under probabilistic assumptions
  • Demonstrated existence of ℏeff as a function of fluctuation intensity and mean action density
  • Constructed a Hilbert space without assigning complex weights to histories
  • Yielded a quadratic local effective action through coarse-graining
  • Reproduced the Feynman path integral in the continuum limit

Abstract

We present a mathematical program for a theory in which time (temporal order)is fundamental, while space, geometry, and quantum mechanics emerge from thestatistical properties of a growing causal network. The framework is built on rigorousdefinitions, explicit axioms, and provable theorems under clearly stated assumptions.Key results include: (1) the existence of an effective constant ℏeff = σ2S/µ fromstationary growth statistics, derived as the ratio of fluctuation intensity to mean action density; (2) a rigorous construction of a Hilbert space and complex amplitudesvia the Gelfand-Naimark-Segal (GNS) method applied to a positive definite correlation kernel between classical histories—crucially, no complex weights are assigned toindividual histories; (3) a causally covariant coarse-graining procedure that yields aquadratic local effective action; and (4) a demonstration that the emergent structurereproduces the Feynman path integral in the continuum limit.All results are stated as theorems with proofs under explicit probabilistic assumptions. The program identifies open problems in hierarchical order and provides afoundation for further development toward continuum geometry, quantum dynamics,and testable cosmological predictions. This revised version (0.3) addresses criticalpoints raised in peer review, including a strengthened proof of positive definiteness,clarification of the logical status of ℏeff, and a detailed discussion of the unitarityproblem.

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Cite This Study

Alik Gimranov (2026) studied this question.

synapsesocial.com/papers/69a3d811ec16d51705d2e909https://doi.org/10.5281/zenodo.18804309
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Also Consider

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

  1. 1Time Emergence and Local Temporal Degrees of Freedom: A Unified Spacetime Theory, Rigorous Mathematical Derivation and Complete Experimental Scheme2026
  2. 2Quantization of the Evolutionary Time Field and the Foundations of Quantum Mechanics — From Time Density Fluctuations to Hilbert Space Structure2026
  3. 3The Theory of Emergent Metric Tension in Causality: An Ontological Framework for Quantum Mechanics and Spacetime2026
  4. 4Proto-Space: A Formal and Philosophical Framework for Spacetime Emergence from Quantum Entanglement2026
  5. 5Time and Spacetime from Open-System Boundary Persistence: Two Postulates2026