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首页> 外文期刊>International journal of modern physics, E. Nuclear physics >Two-component dressed-bag model for NN interaction: Deuteron structure and phase shifts up to 1 GeV
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Two-component dressed-bag model for NN interaction: Deuteron structure and phase shifts up to 1 GeV

机译:用于神经网络相互作用的两组分穿戴式包装袋模型:氘核结构和相移高达1 GeV

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A two-component model is developed for the intermediate-range NN interaction based on a new mechanism with an intermediate symmetric six-quark bag "dressed" by a and other fields. To calculate the transition amplitude, the microscopic six-quark shell-model in combination with the P-3(0)-quark pion production mechanism is used. As a result, an effective energy-dependent NN interaction is constructed. The new quark-meson model for the NN interaction has been demonstrated to result in a new type of NN tensor force at intermediate ranges, which is crucially important for the treatment of tensor mixing at intermediate energies. The suggested model is able to describe NN phase shifts in a broad energy range from low energy up to 1 GeV, and the deuteron structure. The generalization of the model results in new spin-orbit 2N and 3N forces and new meson-exchange currents induced by intermediate dressed bag components, and also in the enhancement of a collective sigma-field in nuclei. [References: 69]
机译:基于一种新机制,针对中间范围的NN交互作用,开发了一种两成分模型,其中一种中间对称的六夸克袋由a和其他领域“穿戴”。为了计算跃迁幅度,使用了微观六夸克壳模型与P-3(0)-夸克介子产生机理相结合。结果,构造了有效的能量依赖的NN相互作用。已经证明,用于NN交互作用的新的夸克-介子模型会在中间范围产生新的NN张量力,这对于处理中间能的张量混合至关重要。建议的模型能够描述从低能量到1 GeV的较宽能量范围内的NN相移,以及氘核结构。该模型的一般化会导致新的自旋轨道2N和3N力,以及由中间穿戴的布袋组件引起的新的介子交换电流,并且还会增强原子核中的总sigma场。 [参考:69]

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