Dirac fields, torsion and Barbero-Immirzi parameter in Cosmology
arXiv:1201.5423 · doi:10.1088/1475-7516/2012/06/017
Abstract
We consider cosmological solution for Einstein gravity with massive fermions with a four-fermion coupling, which emerges from the Holst action and is related to the Barbero-Immirzi (BI) parameter. This gravitational action is an important object of investigation in a non-perturbative formalism of quantum gravity. We study the equation of motion for for the Dirac field within the standard Friedman-Robertson-Walker (FRW) metric. Finally, we show the theory with BI parameter and minimally coupling Dirac field, in the zero mass limit, is equivalent to an additional term which looks like a perfect fluid with the equation of state \ , with which is independent of the BI parameter. The existence of mass imposes a variable , which creates either an inflationary phase with , or assumes an ultra hard equation of states for very early universe. Both phases relax to a pressure less fluid for late universe (corresponding to the limit ).
LaTeX file (with jcappub.sty), 16 pages, no figures. Some formulations and discussions slightly modified, fits the version to be published in JCAP
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