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Anatomy of One-Loop Effective Action in Noncommutative Scalar Field Theories

One-loop effective action of noncommutative scalar field theory with cubic self-interaction is studied. Utilizing worldline formulation, both planar and nonplanar part of the effective action are computed explicitly. We find complete agreement of the result with Seiberg-Witten limit of string worlds...

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Detalles Bibliográficos
Autores principales: Kiem, Youngjai, Rey, Soo-Jong, Sato, Haru-Tada, Yee, Jung-Tay
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1007/s100520100829
http://cds.cern.ch/record/509000
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author Kiem, Youngjai
Rey, Soo-Jong
Sato, Haru-Tada
Yee, Jung-Tay
author_facet Kiem, Youngjai
Rey, Soo-Jong
Sato, Haru-Tada
Yee, Jung-Tay
author_sort Kiem, Youngjai
collection CERN
description One-loop effective action of noncommutative scalar field theory with cubic self-interaction is studied. Utilizing worldline formulation, both planar and nonplanar part of the effective action are computed explicitly. We find complete agreement of the result with Seiberg-Witten limit of string worldsheet computation and standard Feynman diagrammatics. We prove that, at low-energy and large noncommutativity limit, nonplanar part of the effective action is simplified enormously and is resummable into a quadratic action of scalar open Wilson line operators.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2001
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spelling cern-5090002023-03-14T17:03:39Zdoi:10.1007/s100520100829http://cds.cern.ch/record/509000engKiem, YoungjaiRey, Soo-JongSato, Haru-TadaYee, Jung-TayAnatomy of One-Loop Effective Action in Noncommutative Scalar Field TheoriesParticle Physics - TheoryOne-loop effective action of noncommutative scalar field theory with cubic self-interaction is studied. Utilizing worldline formulation, both planar and nonplanar part of the effective action are computed explicitly. We find complete agreement of the result with Seiberg-Witten limit of string worldsheet computation and standard Feynman diagrammatics. We prove that, at low-energy and large noncommutativity limit, nonplanar part of the effective action is simplified enormously and is resummable into a quadratic action of scalar open Wilson line operators.One-loop effective action of noncommutative scalar field theory with cubic self-interaction is studied. Utilizing worldline formulation, both planar and nonplanar part of the effective action are computed explicitly. We find complete agreement of the result with Seiberg-Witten limit of string worldsheet computation and standard Feynman diagrammatics. We prove that, at low-energy and large noncommutativity limit, nonplanar part of the effective action is simplified enormously and is resummable into a quadratic action of scalar open Wilson line operators.hep-th/0107106SNUST-01-0502SNUST-2001-0502oai:cds.cern.ch:5090002001-07-12
spellingShingle Particle Physics - Theory
Kiem, Youngjai
Rey, Soo-Jong
Sato, Haru-Tada
Yee, Jung-Tay
Anatomy of One-Loop Effective Action in Noncommutative Scalar Field Theories
title Anatomy of One-Loop Effective Action in Noncommutative Scalar Field Theories
title_full Anatomy of One-Loop Effective Action in Noncommutative Scalar Field Theories
title_fullStr Anatomy of One-Loop Effective Action in Noncommutative Scalar Field Theories
title_full_unstemmed Anatomy of One-Loop Effective Action in Noncommutative Scalar Field Theories
title_short Anatomy of One-Loop Effective Action in Noncommutative Scalar Field Theories
title_sort anatomy of one-loop effective action in noncommutative scalar field theories
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/s100520100829
http://cds.cern.ch/record/509000
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