The Actuality Framework: A Consciousness-First Field Theory with a Falsifiable Prediction

We present a phenomenological field framework in which consciousness is taken as axiomatic — the background invariant against which physical quantities are defined — rather than as an emergent product of non-conscious processes. The framework comprises four constituent equations, a nonlinear dynamical phase equation, a complete mapping onto Ginzburg–Landau condensate theory and the DC Josephson junction, a definition of thermodynamic entropy as loss of phase coherence, and a measurement-theoretic account of perception as environment-induced decoherence. Classical Euclidean geometry, the thermodynamic arrow of time, and quantum state-vector collapse each emerge as low-coherence fixed points of the dynamics. The framework makes a falsifiable prediction: in a Josephson junction driven to extreme phase stiffness (E_J/k_B T >> 102), the quantum phase-jitter noise spectrum should suppress below the standard Nyquist–Johnson thermal limit without any reduction in ambient temperature. To our knowledge, this regime is experimentally unexplored.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-04
DOI
https://doi.org/10.5281/zenodo.23138942
Primary Topic
Philosophy and Theoretical Science
Type
article
Field-Weighted Citation Impact
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article

The Actuality Framework: A Consciousness-First Field Theory with a Falsifiable Prediction

Timothy Helferich
Zenodo (CERN European Organization for Nuclear Research)
Philosophy and Theoretical Science
article

The Actuality Framework: A Consciousness-First Field Theory with a Falsifiable Prediction

Timothy Helferich
article en

Abstract

We present a phenomenological field framework in which consciousness is taken as axiomatic — the background invariant against which physical quantities are defined — rather than as an emergent product of non-conscious processes. The framework comprises four constituent equations, a nonlinear dynamical phase equation, a complete mapping onto Ginzburg–Landau condensate theory and the DC Josephson junction, a definition of thermodynamic entropy as loss of phase coherence, and a measurement-theoretic account of perception as environment-induced decoherence. Classical Euclidean geometry, the thermodynamic arrow of time, and quantum state-vector collapse each emerge as low-coherence fixed points of the dynamics. The framework makes a falsifiable prediction: in a Josephson junction driven to extreme phase stiffness (E_J/k_B T >> 102), the quantum phase-jitter noise spectrum should suppress below the standard Nyquist–Johnson thermal limit without any reduction in ambient temperature. To our knowledge, this regime is experimentally unexplored.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 7%
Philosophy and Theoretical Science
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The Actuality Framework: A Consciousness-First Field Theory with a Falsifiable Prediction — Timothy Helferich · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS