UniPath Realism: A Testable Interpretation of Quantum Trajectory Selection

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Autori principali: Rezapour, Majid, Rezapour, Ramin
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Rezapour, Majid
Rezapour, Ramin
author_facet Rezapour, Majid
Rezapour, Ramin
contents <p>UniPath Realism offers a novel and testable interpretation of quantum mechanics, proposing that the universe follows a single dynamically selected informational path among many probabilistic possibilities. Unlike Many-Worlds or Copenhagen interpretations, UniPath Realism denies the existence of parallel outcomes or observer-triggered collapse, replacing them with a continuous informational trajectory filtered through coherence, entropy gradients, and internal logic. This model reinterprets quantum measurement, decoherence, and entanglement within a deterministic yet flexible framework, offering predictions for engineered interference setups, directional decoherence, and narrative-like coherence collapse. The implications extend into quantum foundations, cognitive science, and the philosophy of reality, suggesting a universe not of randomness but of meaningful informational evolution.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16703458
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle UniPath Realism: A Testable Interpretation of Quantum Trajectory Selection
Rezapour, Majid
Rezapour, Ramin
Quantum Interpretation
Decoherence
Unipath
Informational Physics
Quantum Realism
Measurement Problem
Consciousness
Coherence
Entropy
<p>UniPath Realism offers a novel and testable interpretation of quantum mechanics, proposing that the universe follows a single dynamically selected informational path among many probabilistic possibilities. Unlike Many-Worlds or Copenhagen interpretations, UniPath Realism denies the existence of parallel outcomes or observer-triggered collapse, replacing them with a continuous informational trajectory filtered through coherence, entropy gradients, and internal logic. This model reinterprets quantum measurement, decoherence, and entanglement within a deterministic yet flexible framework, offering predictions for engineered interference setups, directional decoherence, and narrative-like coherence collapse. The implications extend into quantum foundations, cognitive science, and the philosophy of reality, suggesting a universe not of randomness but of meaningful informational evolution.</p>
title UniPath Realism: A Testable Interpretation of Quantum Trajectory Selection
topic Quantum Interpretation
Decoherence
Unipath
Informational Physics
Quantum Realism
Measurement Problem
Consciousness
Coherence
Entropy
url https://doi.org/10.5281/zenodo.16703458