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首页> 外文期刊>The Astrophysical journal >IMPACT OF NEUTRINO FLAVOR OSCILLATIONS ON THE NEUTRINO-DRIVEN WIND NUCLEOSYNTHESIS OF AN ELECTRON-CAPTURE SUPERNOVA
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IMPACT OF NEUTRINO FLAVOR OSCILLATIONS ON THE NEUTRINO-DRIVEN WIND NUCLEOSYNTHESIS OF AN ELECTRON-CAPTURE SUPERNOVA

机译:中微子味振荡对电子俘获超新星的中微子驱动风核合成的影响

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Neutrino oscillations, especially to light sterile states, can affect nucleosynthesis yields because of their possible feedback effect on the electron fraction (Ye). For the first time, we perform nucleosynthesis calculations for neutrino-driven wind trajectories from the neutrino-cooling phase of an 8.8 electron-capture supernova (SN), whose hydrodynamic evolution was computed in spherical symmetry with sophisticated neutrino transport and whose Ye evolution was post-processed by including neutrino oscillations between both active and active–sterile flavors. We also take into account the α-effect as well as weak magnetism and recoil corrections in the neutrino absorption and emission processes. We observe effects on the Ye evolution that depend in a subtle way on the relative radial positions of the sterile Mikheyev–Smirnov–Wolfenstein resonances, on collective flavor transformations, and on the formation of α particles. For the adopted SN progenitor, we find that neutrino oscillations, also to a sterile state with eV mass, do not significantly affect the element formation and in particular cannot make the post-explosion wind outflow neutron-rich enough to activate a strong r-process. Our conclusions become even more robust when, in order to mimic equation-of-state-dependent corrections due to nucleon potential effects in the dense-medium neutrino opacities, six cases with reduced Ye in the wind are considered. In these cases, despite the conversion of active neutrinos to sterile neutrinos, Ye increases or is not significantly lowered compared to the values obtained without oscillations and active flavor transformations. This is a consequence of a complicated interplay between sterile-neutrino production, neutrino–neutrino interactions, and α-effect.
机译:中微子振荡,特别是处于轻度无菌状态时,由于可能会对电子分数(Ye)产生反馈作用,因此会影响核合成产率。首次,我们从8.8个电子俘获超新星(SN)的中微子冷却相进行中微子驱动风轨迹的核合成计算,该超电子的水动力演化是通过球形对称计算的,具有复杂的中微子传输,并且Ye演化是后期-通过在活性和非活性风味之间加入中微子振荡来进行处理。我们还考虑了中微子吸收和发射过程中的α效应以及弱磁性和反冲校正。我们观察到对Ye进化的影响,这种影响以微妙的方式取决于无菌的Mikheyev-Smirnov-Wolfenstein共振的相对径向位置,集体风味转换以及α颗粒的形成。对于采用的SN祖细胞,我们发现中微子振荡(也达到eV质量的无菌状态)不会显着影响元素的形成,特别是无法使爆炸后风流中子富集到足以激活强r过程。当为了模拟由于中等中微子浑浊中核子势能效应引起的状态方程依赖校正时,我们考虑了六种风中Ye降低的情况,我们的结论就变得更加可靠。在这些情况下,尽管将活性中微子转化为无菌中微子,但与没有振荡和活性风味转换的情况相比,Ye升高或未显着降低。这是无菌中微子产生,中微子-中微子相互作用和α效应之间复杂的相互作用的结果。

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