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May 2, 20260 citationsOpen Access

Dynamic Bidirectional Cognitive–Quantum Translation Lattice (DBCQTL): A Coherence-Based Interface Architecture

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NBNorbert Bedoucha

Key Points

  • The aim is to develop an interface architecture that maintains coherence between human perceptions and computational states in classical and quantum contexts.
  • Developed a five-layer system (H↔P↔M↔Q↔E) for bidirectional translation.
  • Modeled interaction as navigation through an informational manifold instead of sequential translation.
  • Defined a global coherence condition C(t) ≥ τ for fidelity of reconstruction.
  • The model demonstrates that increased system complexity results in classical implementations reaching a coherence ceiling, necessitating quantum solutions.
  • Established that quantum implementation is structurally required rather than a mere design choice.

Abstract

DBCQTL is a bidirectional interface architecture designed to maintain structural coherence between human perceptual representations and high-dimensional computational states across classical and quantum domains. The framework models interaction as navigation through a shared informational manifold rather than sequential symbolic translation. The architecture is defined by a five-layer system (H↔P↔M↔Q↔E), bidirectional translation operators, and a global coherence condition C(t) ≥ τ governing the fidelity of reconstruction between perceptual and computational representations. The Perceptual Interface layer operates as a boundary object across Euclidean perceptual space and high-dimensional computational spaces, including Hilbert-space quantum systems. The model establishes that as system complexity increases, classical implementations encounter a coherence ceiling, implying that quantum implementation of the interface becomes a structural requirement rather than a design choice.

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Cite This Study

Norbert Bedoucha (2026) studied this question.

synapsesocial.com/papers/69f594fc71405d493afffe02https://doi.org/10.5281/zenodo.19932876
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