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首页> 外文期刊>Astrophysics and space science >Strongly screening corrections to antineutrino energy loss by beta(-)-decay of nuclides Fe-53, Fe-54, Fe-55, and Fe-56 in supernova
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Strongly screening corrections to antineutrino energy loss by beta(-)-decay of nuclides Fe-53, Fe-54, Fe-55, and Fe-56 in supernova

机译:强烈筛选β( - ) - 核苷酸Fe-53,Fe-54,Fe-55和Fe-56在Supernova的衰减矫正校正

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摘要

Based on the p-f shell-model, we discuss and calculate beta(-)-decay half-lives of neutron-rich nuclei, with a consideration of shell and pair effects, the decay energy, and the nucleon numbers. According to the linear response theory model, we study the effect of electron screening on the electron energy, beta-decay threshold energy, and the antineutrino energy loss rate by beta(-)-decay of some iron isotopes. We find that the electron screening antineutrino energy loss rates increase by about two orders of magnitude due to the shell effects and the pairing effect. Beta-decay rates with Q-value corrections due to strong electron screening are higher than those without the Q-value corrections by more than two orders of magnitude. Our conclusions may be helpful for the research on numerical simulations of the cooling of stars.
机译:基于P-F壳牌模型,我们讨论和计算富含中子核的衰变半衰期,考虑到壳和对效应,腐烂能量和核数。 根据线性响应理论模型,我们研究了电子筛选对电子能源,β - 衰减阈值能量的影响,以及β( - ) - 一些铁同位素的衰变的抗替乳菌能量损失率。 我们发现,由于壳体效应和配对效果,电子筛选抗扰奏能量损失率增加约两个数量级。 由于强电子筛选引起的Q值校正的Beta衰减率高于Q值校正的Q值校正的速度超过两个数量级。 我们的结论可能有助于研究恒星冷却的数值模拟。

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