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Ab-initio Hamiltonian approach to light nuclei and to quantum field theory

机译:从头开始的哈密顿量方法对光核和量子场论

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Nuclear structure physics is on the threshold of confronting several long-standing problems such as the origin of shell structure from basic nucleona€“nucleon and three-nucleon interactions. At the same time those interactions are being developed with increasing contact to QCD, the underlying theory of the strong interactions, using effective field theory. The motivation is clear a€“ QCD offers the promise of great predictive power spanning phenomena on multiple scales from quarks and gluons to nuclear structure. However, new tools that involve non-perturbative methods are required to build bridges from one scale to the next. We present an overview of recent theoretical and computational progress with a Hamiltonian approach to build these bridges and provide illustrative results for the nuclear structure of light nuclei and quantum field theory.
机译:核结构物理学正面临着几个长期存在的问题的门槛,例如基本核子和三核子相互作用产生的壳结构起源。同时,通过使用有效场论,人们与QCD(强相互作用的基础理论)的联系越来越紧密,从而发展了这些相互作用。明确的动机是:QCD有望在夸克,胶子到核结构等多个尺度上产生巨大的预测能力。但是,需要使用涉及非扰动方法的新工具来建立从一个尺度到另一个尺度的桥梁。我们用哈密顿方法来建立这些桥的最新理论和计算进展的概述,并为光核的核结构和量子场论提供说明性的结果。

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