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July 7, 20260 citationsOpen Access

Unified Informational Theory: From Quantum Phase-Time to Physical Records, Relativity, and Forces

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YRyaniv riz

Key Points

  • This work aims to develop a unified theory linking time measurement to physical interactions and records.
  • Introduced a theoretical framework, Unified Informational Theory (UiT), exploring the connection between phase-time and physical laws.
  • Investigated the role of Compton cadence and entropy in linking closed phase to mass and gravity.
  • Reconstructed concepts in relativity, gravity, and quantum mechanics to establish falsifiable commitments.
  • Established that gravity is a monotonic occupation of record capacity by Compton throughput.
  • Showed that reversal in global and local contexts yields different energetic consequences.
  • Posited new insights into photon delay and gravitationally mediated entanglement, presenting novel concepts for further testing.

Abstract

Unified Informational Theory (UiT), is a theoretical framework in which measured time is the ordered production of stable four-momentum records from phase-active physical distinctions, not a primitive external axis. The framework uses one carrier object, closed light with a Planck-scale phase carrier exposed to record-space at the Compton cadence, and one operation, record extraction governed by an entropy ledger. The Compton duty factor is the central condensance bridge from closed phase cadence to mass, inertia, gravitational capacity load, and horizon boundary count. Motion repartitions the same update budget; gravity is monotonic record-capacity occupation by Compton throughput; electromagnetism is Wilson phase transport on the oriented argument branch; weak decay is a local reverse-registration patch embedded in a forward record environment; and strong structure is read as carrier-closure topology. The phase-time spectrum separates reversible phase content from record-layer memory, explaining why global reversal is energetically consistent while local reversal produces a boundary mismatch and a weak rewrite force. The paper reconstructs known limits in relativity, gravity, horizon entropy, diffusion, gauge transport, and nuclear readouts, and states falsifiable commitments including quadratic photon delay, weak perturbability and prohibition classes, closed-loop memory reversal, evolving registration cosmology, and a null result for gravitationally mediated entanglement. Principal claims carry epistemic status tags.

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Cite This Study

yaniv riz (2026) studied this question.

synapsesocial.com/papers/6a4c9711331bc25c9e5f4276https://doi.org/10.5281/zenodo.21209706
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Also Consider

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

  1. 1Unified informational Theory (UiT): Time, Mass, Force, and Nuclear Structure from Closed Phase Registration2026
  2. 2Unified Informational Theory: Time, Force, Gauge Structure, Matter, Thermodynamics, and Cosmology.2026
  3. 3Unified Informational Theory (UiT): Repetitive Phase Registration and Mismatch Action across Relativity, Gravity, Electromagnetism, Horizons, and Nuclear Forces2026
  4. 4Physical Time as Information-Registered Closed Phase Surface: Time-as-Memory, Phase-Stiffness Forces, Weak-Decay Perturbability, and Horizon Thermodynamics2026
  5. 5Unified Informational Theory: From Quantum Phase Information to Physical Records in Spacetime, from Relativity to the Forces2026