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arxiv: 1309.0652 · v1 · pith:R3VXWAPKnew · submitted 2013-09-03 · 🌀 gr-qc · hep-ph· hep-th

Non-abelian Gauge Fields from Defects in Spin-Networks

classification 🌀 gr-qc hep-phhep-th
keywords gaugespin-networksdefectsdescribefieldsdynamicseffectiveemergent
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\emph{Effective} gauge fields arise in the description of the dynamics of defects in lattices of graphene in condensed matter. The interactions between neighboring nodes of a lattice/spin-network are described by the Hubbard model whose effective field theory at long distances is given by the Dirac equation for an \emph{emergent} gauge field. The spin-networks in question can be used to describe the geometry experienced by a non-inertial observer in flat spacetime moving at a constant acceleration in a given direction. We expect such spin-networks to describe the structure of quantum horizons of black holes in loop quantum gravity. We argue that the abelian and non-abelian gauge fields of the Standard Model can be identified with the emergent degrees of freedom required to describe the dynamics of defects in symmetry reduced spin-networks.

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