Gravitational vacuum polarization phenomena due to the Higgs field
arXiv:1303.5695 · doi:10.1140/epjc/s10052-012-2006-1
Abstract
In the standard model the mass of elementary particles is considered as a dynamical property emerging from their interaction with the Higgs field. We show that this assumption implies peculiar deviations from the law of universal gravitation in its distance and mass dependence, as well as from the superposition principle. The experimental observation of the predicted deviations from the law of universal gravitation seems out of reach. However, we argue that a new class of experiments aimed at studying the influence of surrounding masses on the gravitational force - similar to the ones performed by Quirino Majorana almost a century ago - could be performed to test the superposition principle and to give direct limits on the presence of non-minimal couplings between the Higgs field and the spacetime curvature. From the conceptual viewpoint, the violation of the superposition principle for gravitational forces due to the Higgs field creates a conflict with the notion that gravitational potentials, as assumed in Newtonian gravitation or in post-Newtonian parameterizations of metric theories, are well-defined concepts to describe gravity in their non-relativistic limit.
References in corpus (12)
- Quantum Gravity at a Lifshitz Point
- Spectral Dimension of the Universe in Quantum Gravity at a Lifshitz Point
- Test of the Equivalence Principle Using a Rotating Torsion Balance
- Anomalies in electrostatic calibrations for the measurement of the Casimir force in a sphere-plane geometry
- Temporal Extent of Surface Potentials between Closely Spaced Metals
- Development of a high sensitivity torsional balance for the study of the Casimir force in the 1-10 micrometer range
- Dirac fields in f(R)-gravity with torsion
- The detection of the (J,K)=(18,18) line of NH3
- Running coupling in electroweak interactions of leptons from f(R)-gravity with torsion
- Higgs-induced spectroscopic shifts near strong gravity sources
- Edge effects in electrostatic calibrations for the measurement of the Casimir force
- Macroscopic quantum vacuum and microscopic gravitation
Cited by in corpus (5)
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- Search for Higgs shifts in white dwarfs
- Higgs shifts from electron-positron annihilations near neutron stars
- Neutrino mass variability due to nonminimal coupling to spacetime curvature in neutrinophilic two-Higgs-doublet models