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November 22, 2025Open Access

Post--FBHK Fibered Entropy--Transport Geometry with Petz Fibers and Type~III Persistence

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TKTakahashi, K.

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Overview

The paper demonstrates entropy-dissipative persistence in classical configurations, indicating potential in self-organizing systems.

Key Points

  • Kinetic terms are crucial to match geodesic distances in the fibered entropy-transport framework, providing significant insights for future applications.
  • Existing coarse-graining maps reveal how to control entropy in dynamic models that integrate classical and quantum aspects.
  • An analysis of information-geometric applications highlights the benefits of combining classical dynamics with quantum state fibers.
  • This framework may enable advanced methodologies in AI and physics, supporting the development of self-organizing systems.

Cite This Study

Takahashi, K. (2025) studied this question.

synapsesocial.com/papers/6924e3ddc0ce034ddc34e886https://doi.org/10.5281/zenodo.17679425
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