(Short Paper26) Physical Formulation of Qualia in the In Vivo QPU Paradigm: Reconstruction of Primitive Fear Memories and Chemical-Quantum Parameter Conversion Model by Glial OS

“Qualia,” which refers to human subjective textures and raw sensations, has been called the “hard problem” in traditional classical neuroscience and analytic philosophy, and its physical entity has been debated while remaining unknown. Based on the in vivo quantum processing unit (QPU) theory, this paper formulates qualia as “a process in which glial cells (chemical OS) physically resimulate and reconstruct the absolute conditions of computation (the energy landscape of the Hamiltonian) in past extreme states.” Taking the experience of escaping from wild beasts in primitive times as an example, we mathematically model a series of physical conversion paths: “Chemical concentration → Ion channel/Liquid-Liquid Phase Separation (LLPS) → Spatial distance and Electric field → Hamiltonian coefficients.” We clarify that memory is not merely the digital storage of spatial and visual data, but a strong phase-locking (synchronization) of the glial OS’s environmental setting parameters to the deeply carved wave valleys on the single life wave function, and that the physical redeployment of this computational environment via wavelength resonance is the true nature of qualia.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-24
DOI
https://doi.org/10.5281/zenodo.22938805
Primary Topic
Biofield Effects and Biophysics
Type
preprint
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(Short Paper26) Physical Formulation of Qualia in the In Vivo QPU Paradigm: Reconstruction of Primitive Fear Memories and Chemical-Quantum Parameter Conversion Model by Glial OS

kotoan.gg
Zenodo (CERN European Organization for Nuclear Research)
Biofield Effects and Biophysics
preprint

(Short Paper26) Physical Formulation of Qualia in the In Vivo QPU Paradigm: Reconstruction of Primitive Fear Memories and Chemical-Quantum Parameter Conversion Model by Glial OS

kotoan.gg
preprint en

Abstract

“Qualia,” which refers to human subjective textures and raw sensations, has been called the “hard problem” in traditional classical neuroscience and analytic philosophy, and its physical entity has been debated while remaining unknown. Based on the in vivo quantum processing unit (QPU) theory, this paper formulates qualia as “a process in which glial cells (chemical OS) physically resimulate and reconstruct the absolute conditions of computation (the energy landscape of the Hamiltonian) in past extreme states.” Taking the experience of escaping from wild beasts in primitive times as an example, we mathematically model a series of physical conversion paths: “Chemical concentration → Ion channel/Liquid-Liquid Phase Separation (LLPS) → Spatial distance and Electric field → Hamiltonian coefficients.” We clarify that memory is not merely the digital storage of spatial and visual data, but a strong phase-locking (synchronization) of the glial OS’s environmental setting parameters to the deeply carved wave valleys on the single life wave function, and that the physical redeployment of this computational environment via wavelength resonance is the true nature of qualia.

Zenodo (CERN European Organization for Nuclear Research)
Biofield Effects and Biophysics
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