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M. Trushyk

Publications and source records attributed to M. Trushyk.

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Quantum Field Theoretic Derivation of the Einstein Equivalence Principle

We provide a derivation of the Einstein Weak Equivalence Principle (WEP) based on our Quantum Field Theory (QFT) of the masseon and graviton particles called ElectroMagnetic Quantum Gravity (EMQG, ref. 1). EMQG provides a framework for understanding Newtonian Inertia as a pure QFT process involving the photon as the vector boson exchange particle. Photons are exchanged between the electrically charged masseon particles (which are the ultimate consistuents of the fermion particles of ordinary matter, and contain electrical charge and mass-charge) of an accelerated mass, and the electrically charged virtual masseon particles of the quantum vacuum. The sum of all the tiny electromagnetic forces contributed by each masseon particle of the mass from the surrounding quantum vacuum is the source of the total inertial force of an accelerated mass in Newton's F=MA. We found that gravity involves this same process, where now the virtual masseons of the quantum vacuum are accelerated by the graviton exchanges between the masseons in the earth (which have mass charge) and the virtual masseons of the quantum vacuum (which also have mass charge). Equivalence occurs because of the reversal of the roles of the quantum vacuum and masseons in accelerated frames and under gravity. Equivalence is not perfect. There is a tiny imbalance between gavitational mass and inertial mass (in favor of gravity) caused by the direct graviton exchanges with the mass (not present in inertial mass).

physics.gen-ph

Special Relativity Derived from Cellular Automata Theory: The Origin of the Universal Speed Limit

A new formulation of Special Relativity is described. It is based on Cellular Automata theory and on a new theory of inertia called Quantum Inertia. The universe consists of a huge 3D array of cells given by C(x,y,z), whose numeric states are updated by every new CA clock period. The numeric state of the cells depends on the contents of the imediate neigbours and on the mathematical rules of the cell, with each cell containing the same set of rules. Photon motion on the CA is represented by information patterns 'shifting' from cell to adjacent cell at every clock cycle, and this represents the universal speed limit. The Lorentz Transformations follow directly from this model of light motion. The concept of mass and inertia is revised to be compatible with the CA model.

physics.gen-ph