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物质记忆与意识涌现的统一理论:电驱意识原理与元素意识强度

Futao Zhao

Figshare March 26, 2026 DOI: 10.6084/m9.figshare.31859050 (opens in new tab)

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AI-extracted from the abstract
Characteristics Theoretical or philosophical paper Peer reviewed
Key points Proposes a unified theoretical framework in which consciousness emerges from memory via a principle termed "Electric-Driven Consciousness and Memory-Carried by Motion." The authors define an elemental consciousness intensity I_Z, computed from the Yin Equation A2.0, and propose that it relates to the quantum decoherence rate increment as ΔΓ = ξ·I_Z, arguing that systematic mapping of the environmental coupling coefficient ξ offers an empirical path to test the theory.

Abstract

This paper proposes a unified theoretical framework of memory-based consciousness emergence, centered on the "Electric-Driven Consciousness and Memory-Carried by Motion" principle. We define the elemental consciousness intensity I Z​ , a computable physical quantity characterizing the baseline potential of elemental atoms to emerge consciousness from memory at 298 K, calculated via the Yin Equation A2.0. The correlation between I Z​ and the quantum decoherence rate increment ΔΓ is established as ΔΓ=ξ⋅I Z​ , providing an empirical path for validating the theory through systematic mapping of the environmental coupling coefficient ξ. This framework transforms consciousness research from philosophical speculation into a computable and testable quantitative science