Physics & Spacearticle2026-08-02

PFUSRC-128 From Consensus Alignment to Slack Creation: The Foundational Operational Architecture of Third-Threshold Civilization

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Abstract

PFUSRC-125 diagnoses the entropic saturation crisis of Second-Threshold civilizational frameworks; PFUSRC-126 constructs the topological iteration logic of cognitive consensus; PFUSRC-127 completes hierarchical repositioning for the mainstream social science paradigm centered on productive forces and production relations. The three papers jointly finish fault diagnosis, theoretical tool construction and deconstruction of the old civilizational system. As the fourth constructive core paper of the serial research, this article systematically establishes the standardized operation logic of Third-Threshold civilization, forming a closed logical chain: Consensus Alignment → Steady-State Direction Confirmation → Topological Slack Quantification → Structural Boundary Identification → Original Topological Creation. Cognitive consensus alignment acts as the mandatory precondition to avoid systemic chaos during paradigm transition. The evolutionary direction of all civilizations is uniquely constrained by the 11D 45° triple coaxial biconical steady-state geometry. The 12/11 full-domain topological gauge ratio and 55-closure anchor distribution jointly restrict the system’s equilibrium slack value, which is quantitatively verified to approach 2/3 via two independent deduction paths. System boundaries are endogenously derived from structural parameters rather than artificially demarcated through a three-step identification procedure. After entering the Third Threshold, civilization’s core contradiction shifts from three-dimensional material resource scarcity to topological steady-state matching and higher-dimensional slack construction. Deep space exploration is redefined as a domain for topological structural expansion, instead of a competition field for finite physical resources.

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-02

Authors: Zhenmin Wang