Physics & Spacearticle2026-08-02

PFUSRC-126 Pressing the New Confirmation Key: Topological Consensus Transition Beyond Second Threshold Civilization Logic

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Abstract

PFUSRC-125 demonstrates that modern civilization is trapped in structural saturation under the Second Threshold symbolic framework and dimensional ascent represents the sole viable evolutionary path. This paper, as a follow-up independent topological study, addresses the core unresolved issue: how to establish a unified cross-civilization cognitive consensus after transcending the old system. Historical collective consensus is anchored by foundational theoretical "confirmation keys" that create cognitive self-locking mechanisms. The contemporary dominant confirmation key rooted in survival-of-the-fittest logic renders win-win cooperation merely superficial policy patches unable to resolve zero-sum resource competition. Relying on PFUSRC 11D triple coaxial biconical topological ontology, this paper reconstructs the new confirmation key: topological redefinition of Dao as the self-evolving cosmic biconical steady-state structure, and De as civilization’s hierarchical alignment posture within topological layers. This research constructs two sets of complete evolutionary differential equations to quantitatively contrast 3D closed stock civilization and 4D rheological topological civilization. The 3D model shows monotonic depletion of physical resources and intensifying involution friction; the 4D topological model forms a positive feedback loop of creative potential and systemic slack, structurally dissolving static material scarcity. The new consensus anchored by topological ontology shifts civilization’s core pursuit from stock resource competition to autonomous higher-dimensional structural creation, turning mutual collaboration into an inevitable topological evolutionary outcome. All mathematical derivation and ontological construction are completed by the independent author without collaborative institutional research support.

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

Authors: Zhenmin Wang