A Theory of Quantum Space-time
Charles Francis

TL;DR
This paper proposes a discrete, rational foundation for quantum physics that eliminates the need for the space-time continuum, resolving key issues like the measurement problem and ultraviolet divergence.
Contribution
It introduces a novel discrete model of quantum mechanics based on categorization principles, deriving classical laws and quantum field theory without traditional quantization.
Findings
Wave function collapse explained as information update
Finite, unambiguous Feynman rules derived
Particles modeled as point-like entities with natural properties
Abstract
An interpretation and re-formulation of modern physics which removes the presumption of the space-time continuum, and bases physical theory on a small number of rational and empirical principles. After briefly describing the philosophical principles underlying the theory, we rigorously construct a discrete model of quantum mechanics. Kets are names, or labels which categorise states of matter but do not directly describe them. The principle of superposition is seen as a definitional truism in the categorisation of states. This resolves the measurement problem of quantum mechanics by attributing the collapse of the wave function to information. The probability interpretation has a natural meaning in which the configuration of interacting particles plays the role of a hidden variable. The model supports a form of relativistic quantum field theory which does not depend on quantisation or…
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Taxonomy
TopicsQuantum Mechanics and Applications · Relativity and Gravitational Theory · Biofield Effects and Biophysics
