论文标题

三核力力:实施和应用原子核和密集物质

Three-Nucleon Forces: Implementation and Applications to Atomic Nuclei and Dense Matter

论文作者

Hebeler, Kai

论文摘要

核结构理论的最新进展大大扩大了通过从头算多体计算的核景观的可访问部分。这些发展为对光,中质和重核以及核物质的微观研究开辟了新的方法,并代表了对整个核图表中原子核的系统和全面理解的重要一步。尽管在给定的核哈密顿量的不同多体方法之间发现了显着的一致性,但与实验的比较和对理论不确定性的理解仍然是重要的开放问题。试验的观察到的差异表明目前使用的核相互作用和操作员的缺陷。手性有效场理论(EFT)允许系统地得出对核子核子(NN),三核子(3N)和高身相互作用的贡献,包括理论不确定性的估计。尽管已经确定了在多体计算中对NN相互作用的处理,但3N相互作用的计算及其在从头算框架中的融合仍然是前沿。这项工作详细回顾了有关改进3N相互作用的推导和实施的最新和当前的发展,并为其实际计算和代表性提供了全面的介绍。我们进一步概述了新颖和既定的方法,这些方法促进了在核结构框架中的3N相互作用的包含和处理,并根据最新的原子核计算以及基于最新的原子核计算以及基于最新的核NN和3N相互作用的核物质选择了。最后,我们讨论正在进行的努力,开放的问题和未来的方向。

Recent advances in nuclear structure theory have significantly enlarged the accessible part of the nuclear landscape via ab initio many-body calculations. These developments open new ways for microscopic studies of light, medium-mass and heavy nuclei as well as nuclear matter and represent an important step toward a systematic and comprehensive understanding of atomic nuclei across the nuclear chart. While remarkable agreement has been found between different many-body methods for a given nuclear Hamiltonian, the comparison with experiment and the understanding of theoretical uncertainties are still important open questions. The observed discrepancies to experiment indicate deficiencies in presently used nuclear interactions and operators. Chiral effective field theory (EFT) allows to systematically derive contributions to nucleon-nucleon (NN), three-nucleon (3N) and higher-body interactions including estimates of theoretical uncertainties. While the treatment of NN interactions in many-body calculations is well established, the calculation of 3N interactions and their incorporation in ab initio frameworks is still a frontier. This work reviews in detail recent and current developments on the derivation and implementation of improved 3N interactions and provides a comprehensive introduction to fundamental methods for their practical calculation and representation. We further give an overview of novel and established methods that facilitate the inclusion and treatment of 3N interactions in ab initio nuclear structure frameworks and present a selection of the latest calculations of atomic nuclei as well as nuclear matter based on state-of-the-art nuclear NN and 3N interactions derived within chiral EFT. Finally, we discuss ongoing efforts, open questions and future directions.

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