Graviton, ghost and instanton condensation on horizon scale of the Universe. Dark energy as a macroscopic effect of quantum gravity
Leonid Marochnik (1), Daniel Usikov, and Grigory Vereshkov (2) ((1), University of Maryland, College Park, (2) Research Institute of Physics,, Southern Federal University)

TL;DR
This paper proposes that dark energy arises from quantum gravity effects involving graviton-ghost condensates, with exact solutions showing how these condensates can explain the universe's accelerated expansion.
Contribution
It introduces a novel quantum gravity framework with exact solutions for graviton-ghost condensates, linking them to dark energy and cosmic acceleration.
Findings
Graviton-ghost condensates can produce a de Sitter-like accelerated expansion.
Exact solutions describe different condensate states with varying graviton-ghost compositions.
The model aligns with supernova observational data on dark energy.
Abstract
We show that cosmological acceleration, Dark Energy (DE) effect is a consequence of the zero rest mass, conformal non-invariance of gravitons, and 1-loop finiteness of quantum gravity (QG). The effect is due to graviton-ghost condensates arising from the interference of quantum coherent states. The theory is constructed as follows: Faddeev-Popov-De Witt gauged path integral -> factorization of classical and quantum variables -> transition to the 1-loop approximation -> choice of ghost sector, satisfying 1-loop finiteness of the theory off the mass shell. The Bogolyubov-Born-Green-Kirckwood-Yvon (BBGKY) chain for the spectral function of gravitons renormalized by ghosts is used to build a theory of gravitons in the isotropic Universe. We found three exact solutions of the equations that describe virtual graviton and ghost condensates as well as condensates of instanton fluctuations.…
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Taxonomy
TopicsCosmology and Gravitation Theories · Relativity and Gravitational Theory · Biofield Effects and Biophysics
