arXiv · 2209.03369
Dressed vs. Pairwise States, and the Geometric Phase of Monopoles and Charges
Abstract
We construct the Faddeev-Kulish dressed multiparticle states of electrically and magnetically charged particles, incorporating the effects of real and virtual soft photons. We calculate the properties of such dressed states under Lorentz transformations, and find that they can be identified with the pairwise multi-particle states that transform under the pairwise little group. The shifts in the dressing factors under Lorentz transformations are finite and have a simple geometric interpretation. Using the transformation properties of the dressed states we also present a novel, fully quantum field theoretic derivation of the geometric (Berry) phase obtained by an adiabatic rotation of the Dirac string, and also of the Dirac quantization condition. For half integer pairwise helcity, we show that these multiparticle states have flipped spin-statistics, reproducing the surprising fact that fermions can be made out of bosons.
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Csaba Csáki, Zi-Yu Dong, Ofri Telem, John Terning, Shimon Yankielowicz. 2022-09-07. Dressed vs. Pairwise States, and the Geometric Phase of Monopoles and Charges. https://doi.org/10.1007/jhep02(2023)211
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