This paper introduces the Tripartite Decomposition and Random Quantum Transition Model, an alternative cosmological paradigm structured to resolve the geometric singularities of black holes and unify the nature of dark energy, dark matter, and antimatter. The universe is conceptualized as a dynamic multidimensional sphere of pure energy, space, and time, devoid of rigid external boundaries. Black holes operate as three-dimensional, omnidirectional compression spheres, reducing matter to the fundamental subatomic scale, where particles collide at ultra-high velocities, ceding their kinetic energy to the system in a manner analogous to collision processes in CERN's particle accelerators. Within this core, extreme contraction forces spacetime components to collapse until the fundamental limit of the Planck Length (1.6 * 10^-35 meters) is reached. At this limiting asymptotic coordinate (Delta t -> epsilon, Delta s -> l_P), the concept of continuous spacetime yields to a fluctuating Quantum Foam, causing a local nullification of Newton's gravitational constant (G -> 0) and smoothing curvature into local flatness (G_mu_nu = 0). Nucleons undergo a fundamental chromodynamic deconstruction: quarks and adjacent gluons experience an absolute asymptotic kinematic arrest upon reaching the Planck barrier; the physical impossibility of forced propagation obliges the hadronic packet to spontaneously cede 99% of its kinetic energy to the system, thereby preventing an infinite logarithmic divergence of the field. This energy flux fuels Heisenberg's stochastic fluctuation (Delta x * Delta p >= h-bar / 2), determining an extreme energetic uncertainty (Delta E -> infinity) that manifests as a global vacuum energy tension (Dark Energy and Dark Matter). The remaining 1% of the original baryonic mass (the bound packet of quarks and gluons) preserves its bound configuration and charge identity due to color confinement within a zero-gravity environment induced by flat spacetime; the asymptotic nullification of coordinates de-localizes the wavefunction within the quantum foam, executing a single discrete space-time jump of non-locality at zero distance, thus preserving the laws of Quantum Field Theory. Once a random reappearance occurs within the ordinary cosmic fabric, the thrust of Quantum Degeneracy Pressure triggers a violent kinetic agitation that instantaneously regenerates the relativistic hyperbolic motion and 99% of the internal kinetic energy, undergoing renormalization through interaction with the Higgs field within an eternal loop that preserves global baryonic invariance.
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Mattia Venturi (2026) studied this question.
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