Bounded particle interactions driven by a nonlocal dual Chern-Simons model
Quantum electrodynamics (QED) of electrons confined in a plane and that yet can undergo interactions mediated by an unconstrained photon has been described by the so-called pseudo-QED (PQED), the (2+1)-dimensional version of the equivalent dimensionally reduced original QED. In this work, we show th...
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doaj-f93f0aaa138041dcb8b6348a8c749d1a2020-11-25T01:30:21ZengElsevierPhysics Letters B0370-26932019-10-01797Bounded particle interactions driven by a nonlocal dual Chern-Simons modelVan Sérgio Alves0E.C. Marino1Leandro O. Nascimento2J.F. Medeiros Neto3Rodrigo F. Ozela4Rudnei O. Ramos5Faculdade de Física, Universidade Federal do Pará, 66075-110 Belém, PA, BrazilInstituto de Física, Universidade Federal do Rio de Janeiro, 21941-972 Rio de Janeiro, RJ, BrazilFaculdade de Ciências Naturais, Universidade Federal do Pará, 68800-000 Breves, PA, BrazilFaculdade de Física, Universidade Federal do Pará, 66075-110 Belém, PA, BrazilFaculdade de Física, Universidade Federal do Pará, 66075-110 Belém, PA, Brazil; Institute for Theoretical Physics, Utrecht University, 3584 CC Utrecht, the NetherlandsDepartamento de Física Teórica, Universidade do Estado do Rio de Janeiro, 20550-013 Rio de Janeiro, RJ, Brazil; Corresponding author.Quantum electrodynamics (QED) of electrons confined in a plane and that yet can undergo interactions mediated by an unconstrained photon has been described by the so-called pseudo-QED (PQED), the (2+1)-dimensional version of the equivalent dimensionally reduced original QED. In this work, we show that PQED with a nonlocal Chern-Simons term is dual to the Chern-Simons Higgs model at the quantum level. We apply the path-integral formalism in the dualization of the Chern-Simons Higgs model to first describe the interaction between quantum vortex particle excitations in the dual model. This interaction is explicitly shown to be in the form of a Bessel-like type of potential in the static limit. This result per se opens exciting possibilities for investigating topological states of matter generated by interactions, since the main difference between our new model and the PQED is the presence of a nonlocal Chern-Simons action. Indeed, the dual transformation yields an unexpected square root of the d'Alembertian operator, namely, (−□)−1 multiplied by the well-known Chern-Simons action. Despite the nonlocality, the resulting model is still gauge invariant and preserves the unitarity, as we explicitly prove. Finally, when coupling the resulting model to Dirac fermions, we then show that pairs of bounded electrons are expected to appear, with a typical distance between the particles being inversely proportional to the topologically generated mass for the gauge field in the dual model. Keywords: Chern-Simons Higgs model, Vortex excitations, Nonlocal dual theoryhttp://www.sciencedirect.com/science/article/pii/S037026931930574X |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Van Sérgio Alves E.C. Marino Leandro O. Nascimento J.F. Medeiros Neto Rodrigo F. Ozela Rudnei O. Ramos |
spellingShingle |
Van Sérgio Alves E.C. Marino Leandro O. Nascimento J.F. Medeiros Neto Rodrigo F. Ozela Rudnei O. Ramos Bounded particle interactions driven by a nonlocal dual Chern-Simons model Physics Letters B |
author_facet |
Van Sérgio Alves E.C. Marino Leandro O. Nascimento J.F. Medeiros Neto Rodrigo F. Ozela Rudnei O. Ramos |
author_sort |
Van Sérgio Alves |
title |
Bounded particle interactions driven by a nonlocal dual Chern-Simons model |
title_short |
Bounded particle interactions driven by a nonlocal dual Chern-Simons model |
title_full |
Bounded particle interactions driven by a nonlocal dual Chern-Simons model |
title_fullStr |
Bounded particle interactions driven by a nonlocal dual Chern-Simons model |
title_full_unstemmed |
Bounded particle interactions driven by a nonlocal dual Chern-Simons model |
title_sort |
bounded particle interactions driven by a nonlocal dual chern-simons model |
publisher |
Elsevier |
series |
Physics Letters B |
issn |
0370-2693 |
publishDate |
2019-10-01 |
description |
Quantum electrodynamics (QED) of electrons confined in a plane and that yet can undergo interactions mediated by an unconstrained photon has been described by the so-called pseudo-QED (PQED), the (2+1)-dimensional version of the equivalent dimensionally reduced original QED. In this work, we show that PQED with a nonlocal Chern-Simons term is dual to the Chern-Simons Higgs model at the quantum level. We apply the path-integral formalism in the dualization of the Chern-Simons Higgs model to first describe the interaction between quantum vortex particle excitations in the dual model. This interaction is explicitly shown to be in the form of a Bessel-like type of potential in the static limit. This result per se opens exciting possibilities for investigating topological states of matter generated by interactions, since the main difference between our new model and the PQED is the presence of a nonlocal Chern-Simons action. Indeed, the dual transformation yields an unexpected square root of the d'Alembertian operator, namely, (−□)−1 multiplied by the well-known Chern-Simons action. Despite the nonlocality, the resulting model is still gauge invariant and preserves the unitarity, as we explicitly prove. Finally, when coupling the resulting model to Dirac fermions, we then show that pairs of bounded electrons are expected to appear, with a typical distance between the particles being inversely proportional to the topologically generated mass for the gauge field in the dual model. Keywords: Chern-Simons Higgs model, Vortex excitations, Nonlocal dual theory |
url |
http://www.sciencedirect.com/science/article/pii/S037026931930574X |
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