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Neutrino dipole moments and charge radii in noncommutative space-time

In this paper we obtain a bound $\Lambda_{\rm NC} < 150$ TeV on the scale of space-time noncommutativity considering photon-neutrino interactions. We compute star-dipole moments and star-charge radii originating from space-time noncommutativity and compare them with the dipole moments calculated...

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Detalles Bibliográficos
Autores principales: Minkowski, Peter, Schupp, Peter, Trampetic, Josip
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s2004-01969-y
http://cds.cern.ch/record/606348
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author Minkowski, Peter
Schupp, Peter
Trampetic, Josip
author_facet Minkowski, Peter
Schupp, Peter
Trampetic, Josip
author_sort Minkowski, Peter
collection CERN
description In this paper we obtain a bound $\Lambda_{\rm NC} < 150$ TeV on the scale of space-time noncommutativity considering photon-neutrino interactions. We compute star-dipole moments and star-charge radii originating from space-time noncommutativity and compare them with the dipole moments calculated in the neutrino-mass extended standard model (SM). The computation depends on the nature of the neutrinos, Dirac versus Majorana, their mass and the energy scale. We focus on Majorana neutrinos. The star-charge radius is found to be $r^* = \sqrt{|< r^2_{\nu}>_{\rm NC}|} =|3\sum_{i=1}^3 ({\theta}^{0i})^2|^{1/4} < 1.6 \times 10^{-19}$ cm at $\Lambda_{\rm NC} = 150$ TeV.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
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spelling cern-6063482023-03-12T05:58:45Zdoi:10.1140/epjc/s2004-01969-yhttp://cds.cern.ch/record/606348engMinkowski, PeterSchupp, PeterTrampetic, JosipNeutrino dipole moments and charge radii in noncommutative space-timeParticle Physics - PhenomenologyParticle Physics - TheoryIn this paper we obtain a bound $\Lambda_{\rm NC} < 150$ TeV on the scale of space-time noncommutativity considering photon-neutrino interactions. We compute star-dipole moments and star-charge radii originating from space-time noncommutativity and compare them with the dipole moments calculated in the neutrino-mass extended standard model (SM). The computation depends on the nature of the neutrinos, Dirac versus Majorana, their mass and the energy scale. We focus on Majorana neutrinos. The star-charge radius is found to be $r^* = \sqrt{|< r^2_{\nu}>_{\rm NC}|} =|3\sum_{i=1}^3 ({\theta}^{0i})^2|^{1/4} < 1.6 \times 10^{-19}$ cm at $\Lambda_{\rm NC} = 150$ TeV.In this paper we obtain a bound $\Lambda_{\rm NC} < 150$ TeV on the scale of space-time noncommutativity considering photon-neutrino interactions. We compute star-dipole moments and star-charge radii originating from space-time noncommutativity and compare them with the dipole moments calculated in the neutrino-mass extended standard model (SM). The computation depends on the nature of the neutrinos, Dirac versus Majorana, their mass and the energy scale. We focus on Majorana neutrinos. The star-charge radius is found to be $r^* = \sqrt{|< r^2_{\nu}>_{\rm NC}|} =|3\sum_{i=1}^3 ({\theta}^{0i})^2|^{1/4} < 1.6 \times 10^{-19}$ cm at $\Lambda_{\rm NC} = 150$ TeV.hep-th/0302175BUTP-2003-02CERN-TH-2003-012IUB-TH-031BUTP-2003-02CERN-TH-2003-012IUB-TH-03oai:cds.cern.ch:6063482003-02-21
spellingShingle Particle Physics - Phenomenology
Particle Physics - Theory
Minkowski, Peter
Schupp, Peter
Trampetic, Josip
Neutrino dipole moments and charge radii in noncommutative space-time
title Neutrino dipole moments and charge radii in noncommutative space-time
title_full Neutrino dipole moments and charge radii in noncommutative space-time
title_fullStr Neutrino dipole moments and charge radii in noncommutative space-time
title_full_unstemmed Neutrino dipole moments and charge radii in noncommutative space-time
title_short Neutrino dipole moments and charge radii in noncommutative space-time
title_sort neutrino dipole moments and charge radii in noncommutative space-time
topic Particle Physics - Phenomenology
Particle Physics - Theory
url https://dx.doi.org/10.1140/epjc/s2004-01969-y
http://cds.cern.ch/record/606348
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