On the field theoretic description of gravitation

Authors
Publication date 2008
Host editors
  • H. Kleinert
  • R.T. Jantzen
  • R. Ruffini
Book title The eleventh Marcel Grossmann Meeting: on Recent Developments in Theoretical and Experimental General Relativity, Gravitation and Relativistic Field Theories: proceedings of the MG11 Meeting on General Relativity, Berlin, Germany 23-29 July 2006. - Part B
ISBN
  • 9789812834263
Event MG11 Meeting on General Relativity
Pages (from-to) 1260-1262
Publisher Singapore: World Scientific
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
Abstract
Maxwell started to describe gravitation as a field in Minkowski space. Such an approach brought Babak and Grishchuk in 1999 the gravitational energy-momentum tensor. Simple manipulations allow the Einstein equations to take the form Aµν = (8πG/c4)Θµν, where A is the acceleration tensor and Θ, the total energy momentum tensor, is conserved in Minkowski space. For non-curved cosmology, the total energy density vanishes: the gravitational part is negative and cancels the one of matter due to the Friedman equation.

In 1989 Logunov added to the Lagrangian a bimetric coupling between the Minkowski and Riemann metrics. The case of a positive cosmological constant allows a regularization of the interior of the Schwarzschild black hole: The components of the metric tensor donot change sign, so, inside the black hole, time keeps its usual role. Cosmology generalizes the ΛCDM model, while gravitational and matter energy cancel again at all times.
Document type Conference contribution
Language English
Published at https://doi.org/10.1142/9789812834300_0124
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