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Nuclear Dynamics and Reactions in the Ab Initio Symmetry-Adapted Framework
Annual Review of Nuclear and Particle Science ( IF 12.4 ) Pub Date : 2021-09-21 , DOI: 10.1146/annurev-nucl-102419-033316
Kristina D. Launey 1 , Alexis Mercenne 1, 2 , Tomas Dytrych 1, 3
Affiliation  

We review the ab initio symmetry-adapted (SA) framework for determining the structure of stable and unstable nuclei, along with related electroweak, decay, and reaction processes. This framework utilizes the dominant symmetry of nuclear dynamics, the shape-related symplectic symmetry, which has been shown to emerge from first principles and to expose dominant degrees of freedom that are collective in nature, even in the lightest species or seemingly spherical states. This feature is illustrated for a broad scope of nuclei ranging from helium to titanium isotopes, enabled by recent developments of the ab initio SA no-core shell model expanded to the continuum through the use of the SA basis and that of the resonating group method. The review focuses on energies, electromagnetic transitions, quadrupole and magnetic moments, radii, form factors, and response function moments for ground-state rotational bands and giant resonances. The method also determines the structure of reaction fragments that is used to calculate decay widths and α-capture reactions for simulated X-ray burst abundance patterns, as well as nucleon–nucleus interactions for cross sections and other reaction observables.

中文翻译:


Ab Initio Symmetry-Adapted Framework 中的核动力学和反应

我们回顾了用于确定稳定和不稳定原子核结构的 ab initio symmetry-adapted (SA) 框架,以及相关的电弱、衰变和反应过程。该框架利用核动力学的主要对称性,形状相关的辛对称性,这已被证明是从第一性原理中出现的,并暴露出自然界中集体的主导自由度,即使是在最轻的物种或看似球形的状态下。这一特征适用于从氦到钛同位素的广泛原子核,这得益于 ab initio SA 无核壳模型的最新发展,该模型通过使用 SA 基和共振群方法扩展到连续体。综述重点关注基态旋转带和巨共振的能量、电磁跃迁、四极杆和磁矩、半径、形状因子和响应函数矩。该方法还确定了反应碎片的结构,用于计算模拟 X 射线爆发丰度模式的衰变宽度和 α 俘获反应,

更新日期:2021-09-22
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