Phimunu: The Quantum Geometrics of Presence and Particle Condensation
Abstract
This paper resolves the quantum measurement problem by introducing a novel, consciousness-driven metric known as the Presence Density Tensor (Φᵥᵘ), designated as Phimunu. Departing from physicalist interpretations that rely on arbitrary mechanical sensors, this framework formalizes localized subjective presence as the absolute catalyst for wave-function collapse. The research presents a triadic emergence model where two dimensionally flat latent relational points engage in a three-dimensional spherical involution, forming a continuous lemniscate (∞) that compresses into a micro-singularity. The resulting non-computable orthogonal informational surplus (δI), emerging holographically on the boundary, is defined as the localized conscious observer—Das Gödelglitch—acting as the active geometric engine of cosmic rendering. Key Theoretical Components: Presence Density Tensor (Φᵥᵘ): Maps subjective presence across spatial and temporal coordinates, where the temporal coordinate represents the local refresh rate generated by topological friction. The Palla (1 Pₐ): The theoretical unit defining the minimum threshold of non-computable informational focus required to collapse a quantum superposition into a classical state. The Interface Hypothesis: Continuous spacetime is modeled not as a physical container, but as a rendered user-interface where discrete spin-networks are protected by Gödelian incompleteness. Multiversal Navigation: A free-will framework where cognitive shifts in presence density (V: C → [R, Veto] → Ψ) collapse adjacent multiversal branches into actualized experience.
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Authors: Christian Mattias Palla