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June 5, 20260 citationsOpen Access

The Quantum Constructor

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PBPajtim Bajrami

Key Points

  • This research aims to develop a comprehensive model for fault-tolerant quantum computing that enhances physical synthesis at a macro scale.
  • Introduced the Quantum Constructor framework with five fundamental pillars: Higher Quantum Core, Universal Atomic Sensor, Quantum Field Manipulator, Spatial Assembly Matrix, and Semantic Cognitive Interface.
  • Explored real-time mapping of baryonic matter with subatomic decomposition for localized structural reconfiguration.
  • Addressed thermodynamic boundaries and energetic thresholds according to mass-energy equivalence.
  • Demonstrated potential for manipulating molecular eigenstates, resulting in precise atomic rearrangements.
  • Outlined implications for post-scarcity engineering backed by a coherent theoretical framework.
  • Indicated scalability in quantum computing architectures through entangled qubit networks.

Abstract

This paper presents the "Quantum Constructor" (QC), an advanced theoretical model that explores the convergence of fault-tolerant quantum computing and macro-scale physical synthesis. Rather than focusing on incremental advancements in additive manufacturing, the framework introduces a comprehensive computational architecture capable of real-time mapping, subatomic decomposition, and localized structural reconfiguration of baryonic matter. processing core utilizing globally entangled qubit networks can calculate and actively manipulate molecular eigenstates, lowering potential barriers to dictate precise atomic rearrangements. The document outlines the five fundamental pillars of the QC architecture: the Higher Quantum Core (HQC), the Universal Atomic Sensor (UAS), the Quantum Field Manipulator (QFM), the Spatial Assembly Matrix (SAM), and the Semantic Cognitive Interface (SCI). Furthermore, it addresses the thermodynamic boundaries, energetic thresholds scaling with mass-energy equivalence (E=mc²), and the cosmological implications of post-scarcity engineering. Author: Pajtim Bajrami Year: 2026 Category: Theoretical Physics / Quantum Information Science Licence: Creative Commons Attribution-NonCommercial-NoDerivatives 4. 0 International (CC BY-NC-ND 4. 0)

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Cite This Study

Pajtim Bajrami (2026) studied this question.

synapsesocial.com/papers/6a2269c9763171746d5484fdhttps://doi.org/10.5281/zenodo.20523693
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