Cognitive Physico-Mathematics: Informational Oscillatory Topology (IOT). Dynamics from Information to Interpretation

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Autori principali: MARTINEZ, CLAUDIO ALBERTO, VULLIEN, JOSE ANDRES
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author MARTINEZ, CLAUDIO ALBERTO
VULLIEN, JOSE ANDRES
author_facet MARTINEZ, CLAUDIO ALBERTO
VULLIEN, JOSE ANDRES
contents <h3>Description</h3> <p>This work addresses the problem of <strong>interpretive opacity in contemporary artificial intelligence systems</strong>, arising from the use of statistical models operating in high-dimensional latent spaces. The <strong>Informational Oscillatory Topology (IOT)</strong> model is introduced as a physico-mathematical framework that redefines semantics as a stable geometric-energetic structure and formalizes the <strong>Coherent Limit of Interpretability</strong> through a topological relation between the Information Space and the Interpretation Space. The model shows that interpretive coherence necessarily emerges from the structure of the system, giving rise to specific topologies associated with semantic plasticity and rigidity.</p>
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publishDate 2025
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spellingShingle Cognitive Physico-Mathematics: Informational Oscillatory Topology (IOT). Dynamics from Information to Interpretation
MARTINEZ, CLAUDIO ALBERTO
VULLIEN, JOSE ANDRES
Interpretability in Artificial Intelligence
Cognitive Physics
Semantic Topology
Physico-Mathematical Models
Information geometry
Informational Oscillatory Topology
<h3>Description</h3> <p>This work addresses the problem of <strong>interpretive opacity in contemporary artificial intelligence systems</strong>, arising from the use of statistical models operating in high-dimensional latent spaces. The <strong>Informational Oscillatory Topology (IOT)</strong> model is introduced as a physico-mathematical framework that redefines semantics as a stable geometric-energetic structure and formalizes the <strong>Coherent Limit of Interpretability</strong> through a topological relation between the Information Space and the Interpretation Space. The model shows that interpretive coherence necessarily emerges from the structure of the system, giving rise to specific topologies associated with semantic plasticity and rigidity.</p>
title Cognitive Physico-Mathematics: Informational Oscillatory Topology (IOT). Dynamics from Information to Interpretation
topic Interpretability in Artificial Intelligence
Cognitive Physics
Semantic Topology
Physico-Mathematical Models
Information geometry
Informational Oscillatory Topology
url https://doi.org/10.5281/zenodo.18072849