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Ahn, Y.H.; Chun, Eung Jin, E-mail: yhahn@ibs.re.kr, E-mail: ejchun@kias.re.kr
arXiv e-print [ PDF ]2016
arXiv e-print [ PDF ]2016
AbstractAbstract
[en] The PQ mechanism resolving the strong CP problem and the seesaw mechanism explaining the smallness of neutrino masses may be related in a way that the PQ symmetry breaking scale and the seesaw scale arise from a common origin. Depending on how the PQ symmetry and the seesaw mechanism are realized, one has different predictions on the color and electromagnetic anomalies which could be tested in the future axion dark matter search experiments. Motivated by this, we construct various PQ seesaw models which are minimally extended from the (non-) supersymmetric Standard Model and thus set up different benchmark points on the axion–photon–photon coupling in comparison with the standard KSVZ and DFSZ models.
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S0370-2693(15)00923-5; Available from http://dx.doi.org/10.1016/j.physletb.2015.11.067; Copyright (c) 2015 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
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BASIC INTERACTIONS, BOSONS, ELECTROMAGNETIC INTERACTIONS, ELEMENTARY PARTICLES, FERMIONS, FIELD THEORIES, GOLDSTONE BOSONS, GRAND UNIFIED THEORY, INTERACTIONS, INVARIANCE PRINCIPLES, LEPTONS, MASSLESS PARTICLES, MATHEMATICAL MODELS, MATTER, PARTICLE INTERACTIONS, PARTICLE MODELS, POSTULATED PARTICLES, QUANTUM FIELD THEORY, SYMMETRY, UNIFIED GAUGE MODELS
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