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June 13, 20260 citationsOpen Access

From the Boundaries of Computer Science to Quantum Geometry: The Dimensional Projection Theory of Consciousness

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UTUfuk Tiryaki

Key Points

  • The study aims to redefine consciousness through the Dimensional Projection Theory, challenging current materialist perspectives tied to AI.
  • Explores connections between automata theory, LLM architectures, and Gödel's Incompleteness Theorems.
  • Proposes a new framework for understanding consciousness as a geometric phenomenon rather than purely computational.
  • Suggests that cognition arises from the brain's quantum microstructures accessing higher dimensions of spacetime.
  • Proposes that thoughts manifest as lower-dimensional projections into our three-dimensional reality.

Abstract

This paper explores the intersection of automata theory, large language model (LLM) architectures, and the epistemological boundaries established by Kurt Gödel’s Incompleteness Theorems. While the probabilistic and emergent nature of modern AI—often termed "Software 2.0"—fuels reductionist, materialist views that reduce human consciousness to a mere user-interface illusion, Roger Penrose’s Gödelian critiques challenge this paradigm. Rather than placing the human brain on a pedestal of biological exceptionalism, this paper proposes the Dimensional Projection Theory of Consciousness, redefining the brain as a highly complex physical receiver embedded within the geometric fabric of higher-dimensional spacetime. We hypothesize that cognition is not an act of computation, but rather the process of the brain's quantum microstructures momentarily accessing higher dimensions (e.g., a 5th dimension) of macro spacetime, rendering thoughts as lower-dimensional cross-sections or projections into our 3D reality.

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Cite This Study

Ufuk Tiryaki (2026) studied this question.

synapsesocial.com/papers/6a2cf604faef96ed7f057dc3https://doi.org/10.5281/zenodo.20647815
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