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Intertwiner Entanglement Excitation and Holonomy Operator

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abstract

In the loop quantum gravity framework, spin network states carry entanglement between quantum excitations of the geometry at different space points. This intertwiner entanglement is gauge-invariant and comes from quantum superposition of spins and intertwiners. Bipartite entanglement can be interpreted as a witness of distance, while multipartite entanglement reflects the curvature of the quantum geometry. The present work investigates how the bipartite and multipartite intertwiner entanglement changes under the action of the holonomy operator, which is the basic building block of loop quantum gravity's dynamics. We reveal the relation between entanglement excitation and the dispersion of the holonomy operator. This leads to a new interesting connection between bulk geometry and boundary observables via the dynamics of entanglement.

fields

gr-qc 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

Bell states for fermions in loop quantum gravity

gr-qc · 2025-08-06 · unverdicted · novelty 5.0

In loop quantum gravity, a surface-normal fermion spin observable can be used to construct CHSH-type correlations that are violated by fermion states coupled to quantum geometry.

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  • Bell states for fermions in loop quantum gravity gr-qc · 2025-08-06 · unverdicted · none · ref 17 · internal anchor

    In loop quantum gravity, a surface-normal fermion spin observable can be used to construct CHSH-type correlations that are violated by fermion states coupled to quantum geometry.