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Article Dans Une Revue NeuroQuantology Année : 2004

On the Cyclotomic Quantum Algebra of Time Perception

Michel R. P. Planat
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Résumé

I develop the idea that time perception is the quantum counterpartto time measurement. Phase-locking and prime number theory wereproposed as the unifying concepts for understanding the optimalsynchronization of clocks and their 1/f frequency noise. Timeperception is shown to depend on the thermodynamics of a quantumalgebra of number and phase operators already proposed for quantumcomputational tasks, and to evolve according to a Hamiltonianmimicking Fechner's law. The mathematics is Bost and Connesquantum model for prime numbers. The picture that emerges is aunique perception state above a critical temperature and plenty ofthem allowed below, which are parametrized by the symmetry groupfor the primitive roots of unity. Squeezing of phase fluctuationsclose to the phase transition temperature may play a role inmemory encoding and conscious activity.
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hal-00001235 , version 1 (02-03-2004)

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Michel R. P. Planat. On the Cyclotomic Quantum Algebra of Time Perception. NeuroQuantology, 2004, 2 (4), pp.292-308. ⟨hal-00001235⟩

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