A graviton statistics approach to dark energy, inflation and black holes
Peter L. Biermann, Benjamin C. Harms

TL;DR
This paper proposes two new equations in quantum gravity involving gravitons, unifying dark energy, inflation, and black holes into a comprehensive theory with testable predictions for gravitational waves within a few years.
Contribution
It introduces novel creation and soliton wave equations for gravitons, linking them to dark energy, black holes, and inflation, advancing a unified quantum gravity framework.
Findings
Predicts detectable gravitational waves from dark energy within years
Identifies black hole entropy with outgoing gravitons
Suggests high Lorentz factors influence particle interactions
Abstract
We derive two new equations of quantum gravity and combine them with reinterpretations of previously proposed concepts of dark energy, inflation and black holes into a theory which may be a first step toward a comprehensive description of all three phenomena. The resulting theory also predicts new tests which can be experimentally checked within just a few years. The two new equations are : A) a creation equation to give stimulated emission for any surface filled with gravitons, pulling energy from a background, and B) the association of an outgoing soliton wave of gravitons, a "shell front" with a large Lorentz factor derived from the uncertainties in both space and time. These new equations are combined with the common notions of an all-pervasive background of gravitons at the Planck limit, the "Planck sea"; the identification of the thermodynamic limit with the emission of gravitons…
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Taxonomy
TopicsCosmology and Gravitation Theories · Solar and Space Plasma Dynamics · Quantum Mechanics and Applications
