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      Decaying Dark Matter can explain the electron/positron excesses

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          Abstract

          PAMELA and ATIC recently reported excesses in e+ e- cosmic rays. Since the interpretation in terms of DM annihilations was found to be not easily compatible with constraints from photon observations, we consider the DM decay hypothesis and find that it can explain the e+ e- excesses compatibly with all constraints, and can be tested by dedicated HESS observations of the Galactic Ridge. ATIC data indicate a DM mass of about 2 TeV: this mass naturally implies the observed DM abundance relative to ordinary matter if DM is a quasi-stable composite particle with a baryon-like matter asymmetry. Technicolor naturally yields these type of candidates.

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          Minimal Walking Technicolor: Set Up for Collider Physics

          Different theoretical and phenomenological aspects of the Minimal and Nonminimal Walking Technicolor theories have recently been studied. The goal here is to make the models ready for collider phenomenology. We do this by constructing the low energy effective theory containing scalars, pseudoscalars, vector mesons and other fields predicted by the minimal walking theory. We construct their self-interactions and interactions with standard model fields. Using the Weinberg sum rules, opportunely modified to take into account the walking behavior of the underlying gauge theory, we find interesting relations for the spin-one spectrum. We derive the electroweak parameters using the newly constructed effective theory and compare the results with the underlying gauge theory. Our analysis is sufficiently general such that the resulting model can be used to represent a generic walking technicolor theory not at odds with precision data.
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              Author and article information

              Journal
              25 November 2008
              Article
              10.1088/1475-7516/2009/01/043
              0811.4153
              490e962f-5166-4f7d-9697-60fada76662b

              http://arxiv.org/licenses/nonexclusive-distrib/1.0/

              History
              Custom metadata
              IFUP-TH/2008-37
              JCAP 0901:043,2009
              20 pages, 7 figures
              hep-ph

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