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Berry Phase in Non-Perturbative QED

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arxiv 2503.24194 v1 pith:2EYH5LKR submitted 2025-03-31 hep-th quant-ph

classification hep-thquant-ph
keywords berrymathcalphaseeffectsgaugeglobaltopologicalvacuum
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abstract

We study QED$_4$ in the adiabatic approximation, incorporating global topological effects associated with the $U(1)$ Berry connection. The Berry phase accumulated by the fermionic vacuum is given by $\Delta \alpha = \oint_{\mathcal{C}} \gamma_5\, \mathcal{A}^{(n)}$, where $\mathcal{A}^{(n)}$ is a closed but non-exact one-form defined over the space of gauge configurations. This chiral holonomy induces an emergent vacuum angle that contributes non-perturbatively to the effective action. The partition function decomposes into topological sectors weighted by this geometric phase, analogous to quantum systems on multiply connected spaces. Our results reveal that even in Abelian gauge theory, the infrared regime can exhibit global effects beyond the reach of local or perturbative descriptions.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Topology and the Infrared Structure of Quantum Electrodynamics

    hep-th 2025-05 reject novelty 4.0 of 10

    A Berry-phase reformulation of QED's infrared problem that reproduces known divergence cancellations and asserts, without a derivation, a topological origin for positronium.

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