论文标题
高磁场中的核反应筛选,弱相互作用和R过程
Nuclear Reaction Screening, Weak Interactions, and r-Process Nucleosynthesis in High Magnetic Fields
论文作者
论文摘要
研究了热磁化等离子体中的库仑筛选和弱相互作用。在相对论的热等离子度中评估库仑筛选,其中电子和正电子处于平衡状态。除了温度效应外,还评估了对强大外部磁场的弱筛查的影响。在高场中,电子横向动量成分被量化为兰道水平。探索了高温和高磁场处的特征等离子体筛选长度。除了筛选长度的变化外,估计相互作用率的变化。发现高场可能会导致$β$ - 定率提高,因为电子和正电子光谱由Landau水平支配。最后,这里研究的效果是在简单的R过程中评估的。发现相对论库仑筛查对最终丰度分布的影响很小。尽管强磁场中弱相互作用速率的变化可能会影响R过程的演化和丰度分布,但具有显着效果所需的田间强度可能大于当前认为折叠式喷气机或中子星星合并中R过程中典型的环境。如果R-Process站点存在于字段中$ \ gtrsim 10^{14} $ g效应弱衰减的效果可能很重要。
Coulomb screening and weak interactions in a hot, magnetized plasma are investigated. Coulomb screening is evaluated in a relativistic thermal plasma in which electrons and positrons are in equilibrium. In addition to temperature effects, effects on weak screening from a strong external magnetic field are evaluated. In high fields, the electron transverse momentum components are quantized into Landau levels. The characteristic plasma screening length at high temperatures and at high magnetic fields is explored. In addition to changes to the screening length, changes in weak interaction rates are estimated. It is found that high fields can result in increased $β$-decay rates as the electron and positron spectra are dominated by Landau levels. Finally, the effects studied here are evaluated in a simple r-process model. It is found that relativistic Coulomb screening has a small effect on the final abundance distribution. While changes in weak interaction rates in strong magnetic fields can have an effect on the r-process evolution and abundance distribution, the field strength required to have a significant effect may be larger than what is currently thought to be typical of the r-process environment in collapsar jets or neutron star mergers. If r-process sites exist in fields $\gtrsim 10^{14}$ G effects from fields on weak decays could be significant.