Authors: Sylwester Kornowski
During the inflation, the superluminal non-gravitating Higgs field partially transformed into the luminal Einstein spacetime composed of the neutrino-antineutrino pairs (the Einstein spacetime is the scene for the quantum effects). The quantum effects appeared at the end of the inflation because of the partial collapse of the Einstein spacetime. The succeeding phase transitions of the Higgs field and strictly determined radius of the inner Cosmos composed of universes with the same laws of physics and physical constants, lead to the origin of inertia. We showed that the excited states of the Einstein spacetime (the particles, bodies) never can change the properties of the ground state of the Higgs field and, in cosmic scale, cannot change properties of the ground state of the Einstein spacetime (the mean mass density and the mean luminal speed of the components are practically invariant). It causes that classical bodies “slide” without resistance in the two-component spacetime whereas the bare quantum particles disappear in one region of spacetime and appear in another one, and so on (the quantum waves “slide” without resistance as well). Such is the origin of the inertia.
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