Feynman diagrammatic approach to spin foams
Marcin Kisielowski, Jerzy Lewandowski, Jacek Puchta

TL;DR
This paper introduces a diagrammatic approach to spin foams in Loop Quantum Gravity, enabling direct calculation of amplitudes and unifying various models through operator spin network diagrams.
Contribution
It develops a self-contained diagram framework for spin foams that simplifies calculations and accommodates multiple LQG models, including EPRL and FK.
Findings
Diagrams encode all combinatorial information of spin foams.
Framework allows direct amplitude calculations without visualizing spin foams.
Compatible with various LQG models and Hamiltonian structures.
Abstract
"The Spin Foams for People Without the 3d/4d Imagination" could be an alternative title of our work. We derive spin foams from operator spin network diagrams} we introduce. Our diagrams are the spin network analogy of the Feynman diagrams. Their framework is compatible with the framework of Loop Quantum Gravity. For every operator spin network diagram we construct a corresponding operator spin foam. Admitting all the spin networks of LQG and all possible diagrams leads to a clearly defined large class of operator spin foams. In this way our framework provides a proposal for a class of 2-cell complexes that should be used in the spin foam theories of LQG. Within this class, our diagrams are just equivalent to the spin foams. The advantage, however, in the diagram framework is, that it is self contained, all the amplitudes can be calculated directly from the diagrams without explicit…
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