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Studies of neutrino asymmetries generated by ordinary-sterile neutrino oscillations in the early universe and implications for Big Bang nucleosynthesis bounds

机译:早期宇宙中普通无菌中微子振荡产生的中微子不对称性及其对大爆炸核合成界的影响

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摘要

Ordinary-sterile neutrino oscillations can generate a significant lepton number asymmetry in the early Universe. We study this phenomenon in detail. We show that the dynamics of ordinary-sterile neutrino oscillations in the early Universe can be approximately described by a single integro-differential equation which we derive from both the density matrix and Hamiltonian formalisms. This equation reduces to a relatively simple ordinary first order differential equation if the system is sufficiently smooth (static limit). We study the conditions for which the static limit is an acceptable approximation. We also study the effect of the thermal distribution of neutrino momenta on the generation of lepton number. We apply these results to show that it is possible to evade (by many orders of magnitude) the Big Bang Nucleosynthesis (BBN) bounds on the mixing parameters, $\delta m^2$ and $\sin^2 2\theta_0$, describing ordinary-sterile neutrino oscillations. We show that the large angle or maximal vacuum oscillation solution to the solar neutrino problem does not significantly modify BBN for most of the parameter space of interest, provided that the tau and/or mu neutrinos have masses greater than about 1 eV. We also show that the large angle or maximal ordinary-sterile neutrino oscillation solution to the atmospheric neutrino anomaly does not significantly modify BBN for a range of parameters.
机译:普通的无菌中微子振荡会在早期宇宙中产生显着的轻子数不对称性。我们将详细研究这种现象。我们表明,早期宇宙中普通无菌中微子振荡的动力学可以通过一个由密度矩阵和哈密顿形式论导出的积分微分方程来近似描述。如果系统足够平滑(静态极限),则该方程可简化为相对简单的普通一阶微分方程。我们研究静态极限可以接受的近似条件。我们还研究了中微子矩的热分布对轻子数产生的影响。我们应用这些结果表明,有可能逃避混合参数$ \ delta m ^ 2 $和$ \ sin ^ 2 2 \ theta_0 $的大爆炸核合成(BBN)界,描述了普通的无菌中微子振荡。我们显示出,对于太阳中微子问题,大角度或最大真空振荡解不会显着改变大部分关注参数空间的BBN,前提是tau和/或μ中微子的质量大于约1 eV。我们还显示,对于大气中微子异常,大角度或最大不规则中微子振荡解不会显着改变BBN的一系列参数。

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  • 作者

    Foot, R; Volkas, R R;

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  • 年度 1996
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  • 原文格式 PDF
  • 正文语种 eng
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