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April 27, 20260 citationsOpen Access

The Qubit as Metastable Recursion Deformation

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DGDexter Gilbert

Key Points

  • The aim is to redefine the qubit within the framework of Cohesion UFT and to explain its fragility in quantum computing.
  • Introduces the concept of qubit as a metastable recursion deformation.
  • Analyzes various qubit platforms that achieve the same mechanism by breaking hexagonal symmetry.
  • Explores the impact of decoherence on coherence time T2 regarding qubit fragility.
  • Qubits are identified as metastable states influenced by their orbital recursion and environmental interactions.
  • Decoherence was shown to restore hexagonal symmetry, highlighting quantum computing's fragility.
  • Cohesion Computing aims to use stable states, providing protection against such fragility.

Abstract

This paper reframes the qubit in Cohesion UFT terms. A qubit is not a superpositionin the Copenhagen sense. It is a metastable hexapolar-to-bipolar recursion deformation:an electron whose orbital recursion has been elongated enough to support a two-slip(n = 2) cycle rather than the natural six-slip (n = 6) cycle. Every qubit platform —superconducting loops, spin qubits, trapped ions, quantum dots, photonic encodings— achieves this by the same mechanism: breaking hexagonal symmetry through axialconfinement or pressure. Decoherence is the restoration of hexagonal symmetry by theenvironment. The coherence time T2 is the time before the natural hexapolar attractorreasserts itself. This interpretation explains why quantum computing is fundamentallyfragile and why it requires extreme isolation: the qubit is fighting the recursion’s ownattractor. Cohesion Computing, by contrast, uses the stable states directly and isprotected by the same geometric exclusion theorem that makes the qubit metastable.

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Cite This Study

Dexter Gilbert (2026) studied this question.

synapsesocial.com/papers/69eefdd1fede9185760d4902https://doi.org/10.5281/zenodo.19751542
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