Investigating the possible existence of hyper-heavy nuclei in a neutron-star environment

Charalampos Moustakidis
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Abstract

The synthesis of hyper-heavy elements is investigated under conditions simulating neutron star environment. The constrained molecular dynamics approach is used to simulate low energy collisions of extremely n-rich nuclei. A new type of the fusion barrier due to a “neutron wind” is observed when the effect of neutron star environment (screening of Coulomb interaction) is introduced implicitly. When introducing also a background of surrounding nuclei, the nuclear fusion becomes possible down to temperatures of 108 K and synthesis of extremely heavy and n-rich nuclei appears feasible. A possible existence of hyper-heavy nuclei in a neutron star environment could provide a mechanism of extra coherent neutrino scattering or an additional mechanism, resulting in x-ray burst or a gravitational wave signal and, thus, becoming another crucial process adding new information to the suggested models on neutron star evolution. These proceedings are part of a paper that has already been published and the relevant reference is: M. Veselský et al., PRC 106, L012802 (2022).
研究中子星环境中可能存在的超重核
在模拟中子星环境的条件下,研究了超重元素的合成。用约束分子动力学方法模拟了极富n核的低能碰撞。当隐含地引入中子星环境的影响(库仑相互作用的屏蔽)时,观察到一种由“中子风”引起的新型聚变势垒。当引入周围核的背景时,核聚变在108 K的温度下是可能的,并且合成极重和富n核是可行的。在中子星环境中可能存在的超重核可以提供额外相干中微子散射的机制或其他机制,从而导致x射线爆发或引力波信号,从而成为另一个关键过程,为建议的中子星演化模型添加新信息。这些记录是已经发表的一篇论文的一部分,相关参考文献是:M. Veselský et al., PRC 106, L012802(2022)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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