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dc.creatorBorges, L. H. C.-
dc.creatorBarone, F. A.-
dc.creatorOliveira, H. L.-
dc.date.accessioned2022-11-17T21:20:34Z-
dc.date.available2022-11-17T21:20:34Z-
dc.date.issued2022-
dc.identifier.citationBORGES, L. H. C.; BARONE, F. A.; OLIVEIRA, H. L. Higher order derivatives extension of Maxwell-Chern-Simons electrodynamics in the presence of field sources and material boundaries. High Energy Physics – Theory, [S. l.], v. 105, 025008, 2022. DOI: 10.48550/arXiv.2201.00915.pt_BR
dc.identifier.urihttps://doi.org/10.1103/PhysRevD.105.025008pt_BR
dc.identifier.urihttp://repositorio.ufla.br/jspui/handle/1/55516-
dc.description.abstractIn this paper we consider some new classical effects obtained for a planar electrodynamics with the presence of a higher order derivatives term. The model can be interpreted as a kind of extension for the 3d Maxwell-Chern-Simons electrodynamics with higher order derivatives. We consider setups with stationary field sources describing point-like charges and Dirac points. We also investigate this model with the presence of a conducting line (in 3d dimensions, it is the equivalent of a conducting plate in 4d dimensions). In this case we calculate the propagator for the gauge field and the interaction force between the conducting line and a point-like charge, as well as the force between the conducting line and a Dirac point, the source for vortex field solutions. It is shown that the image method is not valid in any case. We also compare the obtained results along the paper with the corresponding ones obtained with the standard Maxwell-Chern-Simons electrodynamics [1].pt_BR
dc.languageen_USpt_BR
dc.publisherCornell Universitypt_BR
dc.rightsrestrictAccesspt_BR
dc.sourceHigh Energy Physics - Theorypt_BR
dc.subjectPlanar electrodynamicspt_BR
dc.subjectMaxwell-Chern-Simons electrodynamicspt_BR
dc.subjectEletrodinâmica planarpt_BR
dc.subjectEletrodinâmica de Maxwell-Chern-Simonspt_BR
dc.titleHigher order derivatives extension of Maxwell-Chern-Simons electrodynamics in the presence of field sources and material boundariespt_BR
dc.typeArtigopt_BR
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