Quantization of gravity in the theory with the massive vector field
Dmitri Khokhlov

TL;DR
This paper explores a quantum gravity model where gravity is mediated by a massive vector field at the Planck scale, proposing a new perspective on gravitational interactions and their unification with matter fields.
Contribution
It introduces a novel approach to quantum gravity based on a vector field with Planck mass, linking gravitational emission to proton decay and matter interactions.
Findings
Gravity can be modeled by a massive vector field at the Planck scale.
Proton decay processes may involve gravitational emission.
Vector fields could unify gravity with matter interactions.
Abstract
The quantum theory of gravity is considered based on the assumption that gravitational interaction occurs by means of the vector field of the Planck mass. Gravitational emission is considered as a process of the decay of proton into some matter fields at the Planck scale. Within the framework of grand unification vector field of the Planck mass may be thought of as those which realize the interaction between leptons and quarks.
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Taxonomy
TopicsRelativity and Gravitational Theory · Cosmology and Gravitation Theories · Geophysics and Gravity Measurements
