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The Soul as a Nonlocal Quantum Information Field: A Physical Basis for Consciousness Beyond the Brain

Majid Karimi Baghmaleki

Zenodo (CERN European Organization for Nuclear Research) January 4, 2026 DOI: 10.5281/zenodo.18144191 (opens in new tab)

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AI-extracted from the abstract
Characteristics Theoretical or philosophical paper Peer reviewed
Key points Proposes that consciousness or the "soul" can be modeled as a Nonlocal Quantum Information Field, arguing that phenomenal states are quantum informational configurations in a field substrate supporting mesoscopic nonlocal entanglement, coupling to neural systems, and subject to thermodynamic constraints. The paper develops physical vocabulary to frame a falsifiable model, with the formal model and experimental protocols deferred to Part II.

Abstract

This paper develops and motivates a research programme that models the phenomenon commonly referred to as the “soul” or subjective consciousness as a Nonlocal Quantum Information Field (NQIF). The NQIF hypothesis treats phenomenal states as structured quantum informational configurations instantiated in a field substrate that (1) supports nonlocal correlations (entanglement) at mesoscopic or larger scales, (2) couples dynamically to biological neural systems through physically definable interaction channels, and (3) is subject to thermodynamic and information-theoretic constraints. Part I (this document) presents the conceptual and historical background, surveys relevant quantum-consciousness proposals, and develops the physical vocabulary—field Hilbert spaces, interaction Hamiltonians, open quantum systems and decoherence estimates, and basic information measures—needed to frame a falsifiable model. Emphasis in Part I is on empirical plausibility and precise formulation of the empirical stakes; Part II will present the formal NQIF model, experimental protocols, and full APA references. Keywords: consciousness; nonlocality; quantum information; entanglement; decoherence; mind– body problem