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Time, Memory, and the Physical Basis of Consciousness

James A. Reggia

Journal of Consciousness Studies April 1, 2025 DOI: 10.53765/20512201.32.3.034 (opens in new tab)

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AI-extracted from the abstract
Characteristics Theoretical or philosophical paper Peer reviewed
Key points Argues that complex-valued electromagnetic fields, as an extension of Maxwell's equations, can explain the temporal duration of conscious experience and the subjective flow of time, and suggest a new interpretation of episodic memory as partly perceptual.

Abstract

Electromagnetic field theories of consciousness have generally assumed that Maxwell's equations are complete, while many physicists have long suspected that they are not. Recently it has been shown that Maxwell's equations can be extended successfully by assuming that electromagnetic fields have complex-valued components. This assumption, while speculative, implies that electromagnetic fields extend into time as well as into space. Here I show that a consequence of this hypothesis, when applied to the brain's selfgenerated fields, associates conscious experience with the propagation of electromagnetic waves through time. Complex-valued fields account for the extended temporal duration of conscious experience and for the subjective flow-of-time experience that is not otherwise explained by existing physics. They also suggest a novel interpretation of the memory mechanisms underlying the recall of past conscious experiences (episodic memory), casting the re-experience of past events as in part a perceptual process rather than solely as a recallfrom-storage process. The explanatory power of any electromagnetic field theory of consciousness is substantially increased by the existence of complex-valued fields.