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Cosmological states in loop quantum gravity on homogeneous graphs

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arxiv 2210.16439 v2 pith:6KXCWAGO submitted 2022-10-28 gr-qc

classification gr-qc
keywords statesquantumcosmologicalgraphsgravityloopobservablesclass
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We introduce a class of states characterized by proposed conditions of homogeneity and isotropy in loop quantum gravity and construct concrete examples given by Bell-network states on a special class of homogeneous graphs. Such states provide new representations of cosmological spaces that can be explored for the formulation of cosmological models in the context of loop quantum gravity. We show that their local geometry is described in an automorphism-invariant manner by one-node observables analogous to the one-body observables used in many-body quantum mechanics, and compute the density matrix representing the restriction of global states to the algebra of one-node observables. The von Neumann entropy of this density matrix provides a notion of entanglement entropy of a local region which respects automorphism-invariance and can be applied to states involving superpositions of distinct graphs.

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  1. Bosonic and fermionic statistics in nonperturbative quantum gravity

    gr-qc 2026-02 conditional novelty 6.0 of 10

    In loop quantum gravity, enforcing invariance under graph automorphisms produces fermionic and mixed-statistics sectors for the quanta of volume, not only bosonic ones.

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