91,772 research outputs found

    Vus and neutron beta decay

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    We discuss the effect of the recent change of VusV_{\rm us} by three standard deviations on the standard model predictions for neutron beta decay observables. We also discuss the effect the experimental error bars of VusV_{\rm us} have on such predictions. Refined precision tests of the standard model will be made by a combined effort to improve measurements in neutron beta decay and in strangeness-changing decays. By itself the former will yield very precise measurements of VudV_{\rm ud} and make also very precise predictions for VusV_{\rm us}

    Prethermalization Production of Dark Matter

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    At the end of inflation, the inflaton field decays into an initially nonthermal population of relativistic particles which eventually thermalize. We consider the production of dark matter from this relativistic plasma, focusing on the prethermal phase. We find that for a production cross section Οƒ(E)∼En\sigma(E)\sim E^n with n>2n> 2, the present dark matter abundance is produced during the prethermal phase of its progenitors. For n≀2n\le 2, entropy production during reheating makes the nonthermal contribution to the present dark matter abundance subdominant compared to that produced thermally. As specific examples, we verify that the nonthermal contribution is irrelevant for gravitino production in low scale supersymmetric models (n=0n=0) and is dominant for gravitino production in high scale supersymmetry models (n=6n=6).Comment: 12 pages, 4 figure
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