Physics – High Energy Physics – High Energy Physics - Phenomenology
Scientific paper
2004-04-30
Phys.Rev. D70 (2004) 095008; Erratum-ibid. D70 (2004) 119902
Physics
High Energy Physics
High Energy Physics - Phenomenology
23 pages LaTeX, 10 eps figures, version to appear in PRD
Scientific paper
10.1103/PhysRevD.70.119902
We present an improved partial wave analysis of the dominant LSP annihilation channel to a fermion-antifermion pair which avoids the non-relativistic expansion being therefore applicable near thresholds and poles. The method we develop allows of contributions of any partial wave in the total angular momentum J in contrast to partial wave analyses in terms of the orbital angular momentum L of the initial state, which is usually truncated to p-waves, and yields very accurate results. The method is formulated in such a way as to allow easy handling of CP-violating phases residing in supersymmetric parameters. We apply this refined partial wave technique in order to calculate the neutralino relic density in the constrained MSSM (CMSSM) in the presence of CP-violating terms occurring in the Higgs - mixing parameter \mu and trilinear A coupling for large tanb. The inclusion of CP-violating phases in mu and A does not upset significantly the picture and the annihilation of the LSP's to a b b_bar, through Higgs exchange, is still the dominant mechanism in obtaining cosmologically acceptable neutralino relic densities in regions far from the stau-coannihilation and the `focus point'. Significant changes can occur if we allow for phases in the gaugino masses and in particular the gluino mass.
Argyrou Marina
Lahanas A. B.
Nanopoulos Dimitri V.
Spanos Vassilis C.
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