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March 10, 20260 citationsOpen Access

Beyond the Thermal Wall: The Cognitive Transition Law (CTL) as a Roadmap for Reversible and Neuromorphic AI Sustainability

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WDwilliam Dreifus

Key Points

  • Explore how the Cognitive Transition Law (CTL) provides a framework for sustainable AI design emphasizing energy efficiency and structural cognition.
  • Introduced the Cognitive Transition Law as a framework for AI development.
  • Analyzed the relationship between energy consumption and cognitive efficiency.
  • Discussed structural internalization as a key factor in reducing energy intensity in AI.
  • Identified that cognitive efficiency is tied to structural embedding of information.
  • Demonstrated a shift from energy-heavy computation to more efficient architecture-guided cognition.
  • Proposed the CTL as a falsifiable design principle for AI sustainability.

Abstract

The contemporary trajectory of artificial intelligence is increasingly constrained not by algorithmic ingenuity but by thermodynamic reality. Over the last decade, progress in AI has been driven primarily by scale: larger models, denser hardware, and rapidly increasing energy consumption. This paper introduces the Cognitive Transition Law (CTL), a thermodynamically grounded conceptual framework describing a transition from energy-dominated computation toward structure-embedded cognition. The central argument is that cognitive efficiency emerges not merely from minimizing energy per operation, but from progressively internalizing information within stable physical structures. As structural internalization increases, inference shifts from an energy-intensive computational process toward architecture-guided cognition. The CTL is proposed as a falsifiable design principle aligning artificial intelligence development with the thermodynamic limits of computation and the structural efficiency observed in biological cognition.

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Cite This Study

william Dreifus (2026) studied this question.

synapsesocial.com/papers/69af955970916d39fea4cce5https://doi.org/10.5281/zenodo.18915972
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