We define an abstract and absolute phase space (“APS”) for sub‐quantum intrinsic wave states, in three axes, each mapping directly to a duality having fundamental ontological basis. Many aspects of quantum physics emerge from the interaction algebra and a model deduced from principles of ‘unique solvability’ and ‘identifiable entity’, and we reconstruct previously abstract fundamental principles and phenomena from these new foundations. The physical model defines bosons as virtual continuous waves pairs in the APS, and fermions as real self‐quantizing snapshots of those waves when simple conditions are met. The abstraction and physical model define a template for the constitution of all fermions, a template for all the standard fundamental bosons and their local interactions, in a common framework and compactified phase space for all forms of real matter and virtual vacuum energy, and a distinct algebra for observables and unobservables. To illustrate our scheme’s potential, we provide examples of slit experiment variations (where the model finds theoretical basis for interference only occurring between two final sources), QCD (where we may model most attributes known to QCD, and a new view on entanglement), and we suggest approaches for other varied applications. We believe this is a viable candidate for further exploration as a foundational proposition for physics.
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22 December 2010
SEARCH FOR FUNDAMENTAL THEORY: The VII International Symposium Honoring French Mathematical Physicist Jean‐Pierre Vigier
12–14 July 2010
London
Research Article|
December 22 2010
An Absolute Phase Space for the Physicality of Matter Available to Purchase
AIP Conf. Proc. 1316, 349–370 (2010)
Citation
John S. Valentine; An Absolute Phase Space for the Physicality of Matter. AIP Conf. Proc. 22 December 2010; 1316 (1): 349–370. https://doi.org/10.1063/1.3536446
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