Ciencias,UNAM

Loop variables for compact two-dimensional quantum electrodynamics

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dc.contributor.author Gambini, R
dc.contributor.author Morales-Tecotl, HA
dc.contributor.author Urrutia, LF
dc.contributor.author Vergara, JD
dc.date.accessioned 2011-01-22T10:27:51Z
dc.date.available 2011-01-22T10:27:51Z
dc.date.issued 1998
dc.identifier.issn 0556-2821
dc.identifier.uri http://hdl.handle.net/11154/2824
dc.description.abstract Variables parametrized by closed and open curves are defined to reformulate compact U(1) quantum electrodynamics in a circle with a massless fermion field. It is found that the gauge-invariant nature of these variables accommodates into a regularization scheme for the Hamiltonian and current operators that is especially well suited for the study of the compact case. The zero-mode energy spectrum, the value of the axial anomaly, and the anomalous commutators this model presents are hence determined in a manifestly gauge-invariant manner. Contrary to the noncompact case, the zero-mode spectrum is not equally spaced and consequently the theory does not lead to the spectrum of a free scalar boson. All the states are invariant under large gauge transformations. In particular, that is the case for the vacuum, and consequently the theta dependence does not appear. en_US
dc.language.iso en en_US
dc.title Loop variables for compact two-dimensional quantum electrodynamics en_US
dc.type Article en_US
dc.identifier.idprometeo 2878
dc.source.novolpages 57(6):3711-3724
dc.subject.wos Astronomy & Astrophysics
dc.subject.wos Physics, Particles & Fields
dc.description.index WoS: SCI, SSCI o AHCI
dc.relation.journal Physical Review D

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