Strong Coupling Qed Breaks Chiral Symmetry
Preprint
- 15 April 1992
Abstract
We show that the strong coupling limit of d-dimensional quantum electrodynamics with $2^{d}/2^{[d/2]}$ flavors of fermions can be mapped onto the s=1/2 quantum Heisenberg antiferromagnet in d-1 space dimensions. The staggered N\'eel order parameter is the expectation value of a mass operator in QED and the spin-waves are pions. We speculate that the chiral symmetry breaking phase transition corresponds to a transition between the flux phase and the conventional N\'eel ordered phase of an antiferromagnetic t-J model.
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All Related Versions
- Version 1, 1992-04-15, ArXiv
- Published version: Modern Physics Letters A, 07 (30), 2811.
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