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Nuclear medium effect on neutron capture reactions during neutron star mergers

机译:核介质对中子明星合并期间中子捕获反应的影响

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The discovery of gravitational waves has confirmed old theoretical predictions that binary systems formed with compact stars play a crucial role not only for cosmology and nuclear astrophysics [1]. As a byproduct of these and subsequent observations, it is now clear that neutron-star mergers can be a competitive site for the production of half of the elements heavier than iron in the Universe following a sequence of fast neutron capture reactions known as the r process. In this article we discuss an effect which has been so far neglected in calculations of r-process nucleosynthesis in neutron star mergers. We show that the corrections due to the neutron environment even at relatively small neutron densities, within the bounds of numerical hydrodynamical simulations of neutron star mergers and after the onset of the r process, are non-negligible and need to be taken into account to accurately describe the elemental abundance as determined by observations.
机译:引力波的发现已经确认了旧的理论预测,该理论预测是具有紧凑型恒星的二元系统不仅为宇宙和核天体物理学发挥至关重要的作用[1]。 作为这些和随后的观察的副产物,现在清楚的是,在一系列快速中子捕获反应之后,中子 - 星相兼并生产比宇宙中的宇宙中的一半重量在于R过程的序列 。 在本文中,我们讨论了迄今为止在中子星兼并中的R-Process核酸合成的计算中忽略的效果。 我们表明,即使在中子密度相对较小的中子密度下,在中子星兼并的数值水动力学模拟的范围内和R过程开始之后,校正也是不可忽略的,并且需要考虑到准确 描述通过观察确定的元素丰富。

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