Official Empiric Probe of Worldlines Reality
收藏资源简介:
Abstract:This work presents the comprehensive framework of the DeGiuseppe model, a generative, worldline-based approach linking quantum coherence to macroscopic reality. The model starts from the premise that discrete energy multiples, encoded in the sequence (N_n = 3,6,9,...), structure both microscopic and macroscopic phenomena. Using a defined Hamiltonian, the temporal evolution of quantum states is mapped onto worldlines, providing a coherent spacetime representation. The concept of coherence energy quantifies the alignment of system states, while evanescent functions describe dissipated and pre-emission energy contributions, bridging quantum and classical regimes. By analyzing planetary orbits, quantum levels, and fundamental constants, we derive the intrinsic scaling constant (k_\mathrm{intrinsic}) without relying on empirical calibration. This constant underpins all derived laws, from Newtonian mechanics to electromagnetism, relativity, and thermodynamics, demonstrating predictive and falsifiable correspondence with observed reality. The DeGiuseppe model thus unifies quantum coherence, classical dynamics, and macroscopic structures within a single numerical and conceptual framework, revealing a discrete, structured basis for the physical universe.



