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Quantum-phase-field concept of matter: Emergent gravity in the dynamic universe

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arxiv 1703.05583 v2 pith:LZZ4HEXQ submitted 2017-03-10 physics.gen-ph

classification physics.gen-ph
keywords spaceuniversedistancedynamicenergyfieldsmarginalmatter
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A monistic framework is set up where energy is the only fundamental substance. Different states of energy are ordered by a set of scalar qunatum-phase-fields. The dual elements of matter, mass and space, are described as volume- and gradient-energy contributions of the set of fields, respectively. Time and space are formulated as background-independent dynamic variables. The evolution equations of the body of the universe are derived from first principles of thermodynamics. Gravitational interaction emerges from quantum fluctuations in finite space. Application to a large number of fields predicts scale separation in space and repulsive action of masses distant beyond a marginal distance. The predicted marginal distance is compared to the size of the voids in the observable universe.

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