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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >BBN CONSTRAINTS ON NEUTRINO OSCILLATIONS PARAMETERS RELAXED OR STRENGTHENED
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BBN CONSTRAINTS ON NEUTRINO OSCILLATIONS PARAMETERS RELAXED OR STRENGTHENED

机译:BBN约束了已放松或加强的中微子振动参数

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Big Bang Nucleosynthesis (BBN) with nonequilibrium νe <-> νs oscillations, in the more general case of non-zero population of νs before oscillations δNs ≠ 0, is discussed. 4He primordial production Yp(δNs) in the presence of νe <-> νs oscillations for different initial populations of the sterile neutrino state 0 ≤ δ Ns ≤ 1 and the full range of oscillation parameters is calculated. Non-zero δNs has a two-fold effect on 4He: (i) it enhances the energy density and hence increases the cosmic expansion rate, leading to Ypoverproduction, and (ii) it suppresses the kinetic effects of oscillations on BBN, namely, the effects on pre-BBN nucleon kinetics, caused by the νe energy spectrum distortion and the v e-v-bar e asymmetry generation by oscillations, leading to decreased Yp production. Depending on oscillation parameters one or the other effect may dominate, causing, correspondingly, either a relaxation of the cosmological constraints or their strengthening with the increase of δNs. More general BBN constraints on νe <-> νs oscillation parameters, corresponding to 3% Yp overproduction, for different initial populations of the sterile state are calculated. Previous BBN constraints were derived assuming empty sterile state before oscillations. It is shown that the cosmological constraints strengthen with the increase of δNs value, the change being more considerable for nonresonant oscillations.
机译:讨论了具有非平衡νe<->νs振荡的大爆炸核合成(BBN),在更普遍的情况下,在振荡δNs≠0之前非零数量的νs。 4在不存在中微子状态0≤δNs≤1的不同初始种群的νe<->νs振荡的情况下,原始He产生Yp(δNs),并计算了整个振荡参数范围。非零δNs对4He产生双重影响:(i)提高能量密度并因此增加宇宙膨胀率,从而导致Ypover生产;(ii)抑制振荡对BBN的动力学影响,即能量谱图扭曲和振动产生的ev-bar e不对称引起的对BBN前核子动力学的影响,导致Yp产量降低。取决于振荡参数,一种或另一种效应可能起主导作用,相应地导致宇宙学约束的放松或随着δNs的增加而增强。对于不同初始状态的无菌状态,计算出更普遍的BBN对νe->νs振荡参数的约束,对应于3%的Yp过量生产。先前的BBN约束条件是假设振荡之前为空无菌状态而得出的。结果表明,宇宙学约束随着δNs值的增加而增强,对于非共振振荡,变化更为明显。

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