The 11-Dimensional Self-Consistent Structure and Emergent Gravity in Unified Spiral Dynamics: A Dialogue with Two Scientists on Trace-Embedding-Memory Theory
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This paper proposes a unified framework grounded in the ontology of "Trace-Embedding-Memory" (TEM), integrating it with the discrete Dialectical-Deductive Dynamics (DDD) model. We demonstrate that the 11-dimensional self-consistent structure is the minimal topological requirement to accommodate four irreducible constraints: chiral imprint conservation, conflict decoupling, non-Markovian memory storage, and global self-referential calibration. Starting from the Coupling Degree (Cij), we geometrize local conflicts to derive gauge fields. Via the Self-Referential Calibration of Dimension 11 (D11), we variationally derive the Einstein-Hilbert action. Crucially, we prove that the Non-Markovian Memory Kernel (K(τ)) arises from information compression when system complexity exceeds the critical threshold kc= 3. Quantum indeterminacy is reinterpreted as the epistemic shadow of historical trace redundancy (η(k)= 1/k). Furthermore, we introduce the Energy-Information Tensor, resolving the energetic cost of compression and identifying black holes as the universe's mechanism for handling logical divergence.
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与两位科学家对话.pdf
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(516.8 kB)
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