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Fermions in three-dimensional spinfoam quantum gravity

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arxiv gr-qc/0609040 v2 pith:L7O3LJUR submitted 2006-09-12 gr-qc

classification gr-qc
keywords gravityquantumspinfoamfermionsclassicalcouplingmodificationtheory
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We study the coupling of massive fermions to the quantum mechanical dynamics of spacetime emerging from the spinfoam approach in three dimensions. We first recall the classical theory before constructing a spinfoam model of quantum gravity coupled to spinors. The technique used is based on a finite expansion in inverse fermion masses leading to the computation of the vacuum to vacuum transition amplitude of the theory. The path integral is derived as a sum over closed fermionic loops wrapping around the spinfoam. The effects of quantum torsion are realised as a modification of the intertwining operators assigned to the edges of the two-complex, in accordance with loop quantum gravity. The creation of non-trivial curvature is modelled by a modification of the pure gravity vertex amplitudes. The appendix contains a review of the geometrical and algebraic structures underlying the classical coupling of fermions to three dimensional gravity.

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Cited by 2 Pith papers

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    A 2+1 Lorentzian spin-foam cosmology model with a Hessian-derived measure and a massive scalar field yields convergent partition functions, with semi-classical expectation values only in the causally regular sector an...

  2. Hilbert space formalisms for group field theory

    gr-qc 2024-12 accept novelty 3.0 of 10

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