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arXiv:hep-ph/9901357·v1·High Energy Physics — Phenomenology

Non-thermal Production of Neutralino Cold Dark Matter from Cosmic String Decays

R. Jeannerot (ICTP, Italie)🇮🇹 · X. Zhang (CCAST, China and ICTP)🇨🇳 · R. Brandenberger (Brown U., USA)🇺🇸

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Abstract

We propose a mechanism of nonthermal production of a neutralino cold dark matter particle, , from the decay of cosmic strings which form from the spontaneous breaking of a U(1) gauge symmetry, such as , in an extension of the minimal supersymmetric standard model (MSSM). By explicit calculation, we point out that with a symmetry breaking scale of around GeV, the decay of cosmic strings can give rise to . This gives a new constraint on supersymmetric models. For example, the dark matter produced from strings will overclose the universe if is near the electroweak symmetry breaking scale. To be consistent with , the mass of the new U(1) gauge boson must be much larger than the Fermi scale which makes it unobservable in upcoming accelerator experiments. In a supersymmetric model with an extra symmetry, the requirement of puts an upper bound on the neutrino mass of about provided neutrino masses are generated by the see-saw mechanism.

Comments: 4 pages, uses Revtex, 1 figure

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