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Park, Jong-Chul; Park, Seong Chan, E-mail: jcpark@cnu.ac.kr, E-mail: sc.park@yonsei.ac.kr2016
AbstractAbstract
[en] Motivated by the recently reported diphoton resonance at 750 GeV, we study a new axion-like bosonic portal model of dark matter physics. When the resonance particle is identified as the pseudo-scalar mediator, via which the standard model sector would interact with the dark matter sector, the data from collider physics would provide profound implications to dark matter phenomenology. In this paper, we first identify the preferred parameter space of the suggested portal model from the results of the LHC run with , and then we examine the dark matter signature taking into account the data from cosmic-ray experiments including Fermi-LAT dwarf galaxy -ray search, HESS -line search, and future CTA diffuse -ray and -line searches.
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Source
S2212686416300450; Available from http://dx.doi.org/10.1016/j.dark.2016.08.002; Copyright (c) 2016 Elsevier B.V. All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Physics of the Dark Universe; ISSN 2212-6864;
; v. 14; p. 4-10

Country of publication
ACCELERATORS, BOSONS, CYCLIC ACCELERATORS, ELEMENTARY PARTICLES, ENERGY RANGE, FIELD THEORIES, GEV RANGE, GOLDSTONE BOSONS, GRAND UNIFIED THEORY, HADRONS, IONIZING RADIATIONS, MATHEMATICAL MODELS, MATTER, PARTICLE MODELS, POSTULATED PARTICLES, QUANTUM FIELD THEORY, RADIATIONS, STORAGE RINGS, SYNCHROTRONS, TEV RANGE, UNIFIED GAUGE MODELS
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