论文标题
Astromers:天体物理学中的核异构体
Astromers: Nuclear Isomers in Astrophysics
论文作者
论文摘要
我们开发了一种方法,以计算核中基态和长寿命异构体之间的热介导的过渡速率。我们还建立了划界热温度的标准,高于该核可以被视为单个物种,并且必须将其视为两个单独的物种:基态物种和一个天体物理异构体(“ Astromer”)物种。在热温度以下,破坏率占据了基态和异构体之间的内部过渡速率。如果破坏率彼此之间也有很大差异,则核水平降低或无法达到热平衡。没有热平衡,计算核反应速率时核水平之间职业概率的分布可能没有安全的假设。在这些条件下,异构体具有天体物理后果,应处理一个单独的astromer物种,该物种在核合成网络中与基态分开演变。我们采用过渡速率方法,并对一些众所周知的澳洲斯特人进行灵敏度研究。我们还研究其他可能具有天体物理兴趣的异构体的过渡。
We develop a method to compute thermally-mediated transition rates between the ground state and long-lived isomers in nuclei. We also establish criteria delimiting a thermalization temperature above which a nucleus may be considered a single species and below which it must be treated as two separate species: a ground state species, and an astrophysical isomer ("astromer") species. Below the thermalization temperature, the destruction rates dominate the internal transition rates between the ground state and the isomer. If the destruction rates also differ greatly from one another, the nuclear levels fall out of or fail to reach thermal equilibrium. Without thermal equilibrium, there may not be a safe assumption about the distribution of occupation probability among the nuclear levels when computing nuclear reaction rates. In these conditions, the isomer has astrophysical consequences and should be treated a separate astromer species which evolves separately from the ground state in a nucleosynthesis network. We apply our transition rate methods and perform sensitivity studies on a few well-known astromers. We also study transitions in several other isomers of likely astrophysical interest.