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March 17, 20260 citationsOpen Access

Stabilizer Quantum Gravity (SQG): Strategic Research Program and Falsifiability Map

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GMGeorge Mallis

Key Points

  • The aim is to explore if spacetime and gravitational interactions can emerge from a specific algebraic framework.
  • Development of a strategic architecture for the SQG program
  • Identifying key research areas such as foundational structure and horizon physics
  • Creation of a detailed falsifiability map with testing criteria for models
  • Phased publication strategy to enhance theoretical credibility
  • Outlined four major research areas focused on various aspects of spacetime and gravity
  • Created a falsifiability map with defined targets and testing criteria
  • Emphasized the need for mathematical formalization and effective dynamics in model development

Abstract

This document presents the strategic architecture and research roadmap of the Stabilizer Quantum Gravity (SQG) program. SQG is advanced not as a completed or closed "Theory of Everything," but as a constrained theorem-engineering and model-construction program. Its central aim is to determine whether spacetime, gravitational response, matter-capable sectors, and horizon/cosmological thermodynamics can emerge from a recoverable operator-algebraic substrate of finite logical depth. The program is organized into four major research spines: Foundational Structure: Mathematical formalization and the "Einstein Bridge". Matter and Internal Structure: Constructive targets for matter-capable defects and chirality obstructions. Large-Scale Effective Dynamics: Open-system cosmological closure and stabilization flow. Critical Sectors and Horizon Physics: Saturation transitions and information release via recoverability transfer. The document provides a detailed Falsifiability Map with explicit "kill-switches" for each research trajectory, a methodological positioning statement, and a phased publication strategy designed to build credibility from the mathematical spine outward.

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Cite This Study

George Mallis (2026) studied this question.

synapsesocial.com/papers/69b8f12fdeb47d591b8c60f7https://doi.org/10.5281/zenodo.19037561
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Stabilizer Quantum Gravity (SQG): An Information-Theoretic Stabilization Framework for Emergent Geometry, Gauge Structure, and Cosmological Response2026
  2. 2Stabilizing Quantum Gravity (SQG): Emergent Spacetime, Gauge Symmetry, and Matter from Recoverable Quantum Codes2026
  3. 3Operator-Algebraic and Information-Theoretic Reinforcement of Stabilizer Quantum Gravity2026
  4. 4Stabilizer Quantum Gravity (SQG): Emergent Spacetime, Gauge Symmetry, and Matter from Recoverable Quantum Codes2026
  5. 5Stabilizer Quantum Gravity II: Recoverability, Entropy Extremality, and the Einstein Bridge2026