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WIMP and SIMP Dark Matter from the Spontaneous Breaking of a Global Group

June 15, 2015 Seminars

by Nicolás Bernal (ICTP - SAIFR, São Paulo, Brazil)

Thursday, 18 June 2015 from 12:00 to 13:00 (Europe/Madrid)
at IFIC ( Seminar Room 1.1.1 )

ABSTRACT

We propose and study a scalar extension of the Standard Model which 
respects a ℤ3 symmetry remnant of the spontaneous breaking of a global 
U(1) symmetry. Consequently, this model has a natural dark matter 
candidate and a Goldstone boson in the physical spectrum. In addition, 
the Higgs boson properties are changed with respect to the Standard 
Model due to the mixing with a new particle. We explore regions in 
the parameter space taking into account bounds from the measured Higgs 
properties, dark matter direct detection as well as measurements of 
the effective number of neutrino species before recombination. The dark 
matter relic density is determined by three classes of processes: 
the usual self-annihilation, semi-annihilation and purely dark matter 
3→2 processes. The latter has been subject of recent interest leading 
to the so-called `Strongly Interacting Massive Particle' (SIMP) scenario. 
We show under which conditions our model can lead to a concrete 
realization of such scenario and study the possibility that the dark 
matter self-interactions could address the small scale structure problems. 
In particular, we find that in order for the SIMP scenario to work, 
the dark matter mass must be in the range 7−115 MeV, with the global 
symmetry energy breaking scale in the TeV range.

http://indico.ific.uv.es/indico/conferenceDisplay.py?confId=2483

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The Astroparticle and High Energy Physics Group is part of IFIC, a joint research institute of Spain's National Council for Scientific Research (CSIC) and Universitat de València (UVEG), devoted to nuclear and particle physics, experimental and theoretical.
See Scientifc Report 2008-2012.

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