A Unified Framework for Potential‑Space Particles and Informational Dynamics
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Description
This work presents a unified theoretical framework for Potential‑Space Particles (PSPs) — informational entities originating in a non‑energetic domain that interact with physical spacetime through boundary‑level processes. The model introduces formal definitions for Potential‑Space, boundary‑skimming interactions, informational mass, relational density, and projection thresholds. A complete mathematical appendix provides state variables, interaction functions, stability conditions, and a logistic projection probability model.
The PSP framework proposes that information exists in a pre‑expressed domain and can influence physical systems when specific relational and boundary conditions are met. This offers a new way to conceptualize perception‑like effects, weak interactions, and the stability of non‑material informational structures. The paper includes predictions, testable implications, and potential experimental approaches for detecting PSP‑related phenomena.
This manuscript is released as a scientific preprint and is intended to support further research, discussion, and refinement within the fields of informational physics, theoretical cosmology, and boundary‑interaction models.
Abstract
The Potential‑Space Particle (PSP) model proposes a sub‑quantum mechanism underlying quantum behavior, based on the idea that particles interact with a propagating informational structure moving through a deeper potential‑space substrate. The PSP behaves like a skipping stone, generating expanding coherence rings at each “skip.” These rings carry instantaneous phase and informational imprints that influence particles they intersect.
This framework provides intuitive explanations for quantum coherence, wave–particle duality, entanglement, and decoherence by treating these phenomena as geometric and temporal interactions with PSP wavefronts. The model is semi‑formal: it uses mathematical structure where appropriate, but emphasizes conceptual clarity and physical intuition.
The PSP model is not presented as a replacement for quantum mechanics, but as a deeper‑level mechanism that may underlie its probabilistic behavior. It offers testable predictions, falsifiable conditions, and a coherent narrative that unifies several quantum phenomena under a single geometric process.
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