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Abstract: It is shown that quantum vacuum fluctuations give rise to a curvature of space-time equivalent to a cosmological constant, that is a homogeneous energy density p and pressure p fulfilling - p = p > 0. The fact that the fluctuations produce curvature, even if the vacuum expectation of the energy vanishes, is a consequence of the non-linear character of the Einstein equation. A calculation is made, involving plausible hypotheses within quantized gravity, which establishes a relation between the two-point correlation of the vacuum fluctuations and the space-time curvature. Arguments are given which suggest that the density p might be of order the "dark energy" density currently assumed to explain the observed accelerated expansion of the universe.
Autoría: Santos E.,
Fuente: Astrophysics and Space Science, 2011, 332, 423-435
Editorial: Kluwer Academic Publishers
Año de publicación: 2011
Nº de páginas: 13
Tipo de publicación: Artículo de Revista
DOI: 10.1007/s10509-010-0557-x
ISSN: 0004-640X,1572-946X
Url de la publicación: https://doi.org/10.1007/s10509-010-0557-x
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